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mdreloc.c revision 1.67.2.1
      1  1.67.2.1  pgoyette /*	$NetBSD: mdreloc.c,v 1.67.2.1 2018/03/30 06:20:10 pgoyette Exp $	*/
      2       1.1       eeh 
      3       1.1       eeh /*-
      4       1.1       eeh  * Copyright (c) 2000 Eduardo Horvath.
      5      1.23   mycroft  * Copyright (c) 1999, 2002 The NetBSD Foundation, Inc.
      6       1.1       eeh  * All rights reserved.
      7       1.1       eeh  *
      8       1.1       eeh  * This code is derived from software contributed to The NetBSD Foundation
      9      1.27   mycroft  * by Paul Kranenburg and by Charles M. Hannum.
     10       1.1       eeh  *
     11       1.1       eeh  * Redistribution and use in source and binary forms, with or without
     12       1.1       eeh  * modification, are permitted provided that the following conditions
     13       1.1       eeh  * are met:
     14       1.1       eeh  * 1. Redistributions of source code must retain the above copyright
     15       1.1       eeh  *    notice, this list of conditions and the following disclaimer.
     16       1.1       eeh  * 2. Redistributions in binary form must reproduce the above copyright
     17       1.1       eeh  *    notice, this list of conditions and the following disclaimer in the
     18       1.1       eeh  *    documentation and/or other materials provided with the distribution.
     19       1.1       eeh  *
     20       1.1       eeh  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21       1.1       eeh  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22       1.1       eeh  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23       1.1       eeh  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24       1.1       eeh  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25       1.1       eeh  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26       1.1       eeh  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27       1.1       eeh  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28       1.1       eeh  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29       1.1       eeh  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30       1.1       eeh  * POSSIBILITY OF SUCH DAMAGE.
     31       1.1       eeh  */
     32       1.1       eeh 
     33      1.37     skrll #include <sys/cdefs.h>
     34      1.37     skrll #ifndef lint
     35  1.67.2.1  pgoyette __RCSID("$NetBSD: mdreloc.c,v 1.67.2.1 2018/03/30 06:20:10 pgoyette Exp $");
     36      1.37     skrll #endif /* not lint */
     37      1.37     skrll 
     38  1.67.2.1  pgoyette #include <machine/elf_support.h>
     39  1.67.2.1  pgoyette 
     40       1.1       eeh #include <errno.h>
     41       1.1       eeh #include <stdio.h>
     42       1.1       eeh #include <stdlib.h>
     43       1.1       eeh #include <string.h>
     44       1.1       eeh #include <unistd.h>
     45       1.1       eeh 
     46       1.1       eeh #include "rtldenv.h"
     47       1.1       eeh #include "debug.h"
     48       1.1       eeh #include "rtld.h"
     49       1.1       eeh 
     50       1.1       eeh /*
     51       1.1       eeh  * The following table holds for each relocation type:
     52       1.1       eeh  *	- the width in bits of the memory location the relocation
     53       1.1       eeh  *	  applies to (not currently used)
     54       1.1       eeh  *	- the number of bits the relocation value must be shifted to the
     55       1.1       eeh  *	  right (i.e. discard least significant bits) to fit into
     56       1.1       eeh  *	  the appropriate field in the instruction word.
     57       1.1       eeh  *	- flags indicating whether
     58       1.1       eeh  *		* the relocation involves a symbol
     59       1.1       eeh  *		* the relocation is relative to the current position
     60       1.1       eeh  *		* the relocation is for a GOT entry
     61       1.1       eeh  *		* the relocation is relative to the load address
     62       1.1       eeh  *
     63       1.1       eeh  */
     64       1.1       eeh #define _RF_S		0x80000000		/* Resolve symbol */
     65       1.1       eeh #define _RF_A		0x40000000		/* Use addend */
     66       1.1       eeh #define _RF_P		0x20000000		/* Location relative */
     67       1.1       eeh #define _RF_G		0x10000000		/* GOT offset */
     68       1.1       eeh #define _RF_B		0x08000000		/* Load address relative */
     69       1.2       eeh #define _RF_U		0x04000000		/* Unaligned */
     70       1.1       eeh #define _RF_SZ(s)	(((s) & 0xff) << 8)	/* memory target size */
     71       1.1       eeh #define _RF_RS(s)	( (s) & 0xff)		/* right shift */
     72      1.52    martin static const int reloc_target_flags[R_TYPE(TLS_TPOFF64)+1] = {
     73       1.1       eeh 	0,							/* NONE */
     74       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(8)  | _RF_RS(0),		/* RELOC_8 */
     75       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(16) | _RF_RS(0),		/* RELOC_16 */
     76       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* RELOC_32 */
     77       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(8)  | _RF_RS(0),		/* DISP_8 */
     78       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(16) | _RF_RS(0),		/* DISP_16 */
     79       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(0),		/* DISP_32 */
     80       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(2),		/* WDISP_30 */
     81       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(2),		/* WDISP_22 */
     82       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(10),	/* HI22 */
     83       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* 22 */
     84       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* 13 */
     85       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* LO10 */
     86       1.1       eeh 	_RF_G|			_RF_SZ(32) | _RF_RS(0),		/* GOT10 */
     87       1.1       eeh 	_RF_G|			_RF_SZ(32) | _RF_RS(0),		/* GOT13 */
     88       1.1       eeh 	_RF_G|			_RF_SZ(32) | _RF_RS(10),	/* GOT22 */
     89       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(0),		/* PC10 */
     90       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(10),	/* PC22 */
     91       1.1       eeh 	      _RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(2),		/* WPLT30 */
     92       1.1       eeh 				_RF_SZ(32) | _RF_RS(0),		/* COPY */
     93       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(64) | _RF_RS(0),		/* GLOB_DAT */
     94       1.1       eeh 				_RF_SZ(32) | _RF_RS(0),		/* JMP_SLOT */
     95       1.1       eeh 	      _RF_A|	_RF_B|	_RF_SZ(64) | _RF_RS(0),		/* RELATIVE */
     96       1.2       eeh 	_RF_S|_RF_A|	_RF_U|	_RF_SZ(32) | _RF_RS(0),		/* UA_32 */
     97       1.1       eeh 
     98       1.1       eeh 	      _RF_A|		_RF_SZ(32) | _RF_RS(0),		/* PLT32 */
     99       1.1       eeh 	      _RF_A|		_RF_SZ(32) | _RF_RS(10),	/* HIPLT22 */
    100       1.1       eeh 	      _RF_A|		_RF_SZ(32) | _RF_RS(0),		/* LOPLT10 */
    101       1.1       eeh 	      _RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(0),		/* PCPLT32 */
    102       1.1       eeh 	      _RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(10),	/* PCPLT22 */
    103       1.1       eeh 	      _RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(0),		/* PCPLT10 */
    104       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* 10 */
    105       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* 11 */
    106       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(64) | _RF_RS(0),		/* 64 */
    107       1.1       eeh 	_RF_S|_RF_A|/*extra*/	_RF_SZ(32) | _RF_RS(0),		/* OLO10 */
    108       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(42),	/* HH22 */
    109       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(32),	/* HM10 */
    110       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(10),	/* LM22 */
    111       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(42),	/* PC_HH22 */
    112       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(32),	/* PC_HM10 */
    113       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(10),	/* PC_LM22 */
    114       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(2),		/* WDISP16 */
    115       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(32) | _RF_RS(2),		/* WDISP19 */
    116       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* GLOB_JMP */
    117       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* 7 */
    118       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* 5 */
    119       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* 6 */
    120       1.1       eeh 	_RF_S|_RF_A|_RF_P|	_RF_SZ(64) | _RF_RS(0),		/* DISP64 */
    121       1.1       eeh 	      _RF_A|		_RF_SZ(64) | _RF_RS(0),		/* PLT64 */
    122       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(10),	/* HIX22 */
    123       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* LOX10 */
    124       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(22),	/* H44 */
    125       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(12),	/* M44 */
    126       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(32) | _RF_RS(0),		/* L44 */
    127       1.1       eeh 	_RF_S|_RF_A|		_RF_SZ(64) | _RF_RS(0),		/* REGISTER */
    128       1.2       eeh 	_RF_S|_RF_A|	_RF_U|	_RF_SZ(64) | _RF_RS(0),		/* UA64 */
    129       1.2       eeh 	_RF_S|_RF_A|	_RF_U|	_RF_SZ(16) | _RF_RS(0),		/* UA16 */
    130      1.52    martin /* TLS relocs not represented here! */
    131       1.1       eeh };
    132       1.1       eeh 
    133       1.1       eeh #ifdef RTLD_DEBUG_RELOC
    134       1.1       eeh static const char *reloc_names[] = {
    135       1.1       eeh 	"NONE", "RELOC_8", "RELOC_16", "RELOC_32", "DISP_8",
    136       1.1       eeh 	"DISP_16", "DISP_32", "WDISP_30", "WDISP_22", "HI22",
    137       1.1       eeh 	"22", "13", "LO10", "GOT10", "GOT13",
    138       1.1       eeh 	"GOT22", "PC10", "PC22", "WPLT30", "COPY",
    139       1.1       eeh 	"GLOB_DAT", "JMP_SLOT", "RELATIVE", "UA_32", "PLT32",
    140       1.1       eeh 	"HIPLT22", "LOPLT10", "LOPLT10", "PCPLT22", "PCPLT32",
    141       1.1       eeh 	"10", "11", "64", "OLO10", "HH22",
    142       1.1       eeh 	"HM10", "LM22", "PC_HH22", "PC_HM10", "PC_LM22",
    143       1.1       eeh 	"WDISP16", "WDISP19", "GLOB_JMP", "7", "5", "6",
    144       1.1       eeh 	"DISP64", "PLT64", "HIX22", "LOX10", "H44", "M44",
    145      1.52    martin 	"L44", "REGISTER", "UA64", "UA16",
    146      1.52    martin 	"TLS_GD_HI22", "TLS_GD_LO10", "TLS_GD_ADD", "TLS_GD_CALL",
    147      1.52    martin 	"TLS_LDM_HI22", "TLS_LDM_LO10", "TLS_LDM_ADD", "TLS_LDM_CALL",
    148      1.52    martin 	"TLS_LDO_HIX22", "TLS_LDO_LOX10", "TLS_LDO_ADD", "TLS_IE_HI22",
    149      1.52    martin 	"TLS_IE_LO10", "TLS_IE_LD", "TLS_IE_LDX", "TLS_IE_ADD", "TLS_LE_HIX22",
    150      1.52    martin 	"TLS_LE_LOX10", "TLS_DTPMOD32", "TLS_DTPMOD64", "TLS_DTPOFF32",
    151      1.52    martin 	"TLS_DTPOFF64", "TLS_TPOFF32", "TLS_TPOFF64",
    152       1.1       eeh };
    153       1.1       eeh #endif
    154       1.1       eeh 
    155       1.1       eeh #define RELOC_RESOLVE_SYMBOL(t)		((reloc_target_flags[t] & _RF_S) != 0)
    156       1.1       eeh #define RELOC_PC_RELATIVE(t)		((reloc_target_flags[t] & _RF_P) != 0)
    157       1.1       eeh #define RELOC_BASE_RELATIVE(t)		((reloc_target_flags[t] & _RF_B) != 0)
    158       1.2       eeh #define RELOC_UNALIGNED(t)		((reloc_target_flags[t] & _RF_U) != 0)
    159       1.2       eeh #define RELOC_USE_ADDEND(t)		((reloc_target_flags[t] & _RF_A) != 0)
    160       1.1       eeh #define RELOC_TARGET_SIZE(t)		((reloc_target_flags[t] >> 8) & 0xff)
    161       1.1       eeh #define RELOC_VALUE_RIGHTSHIFT(t)	(reloc_target_flags[t] & 0xff)
    162      1.52    martin #define RELOC_TLS(t)			(t >= R_TYPE(TLS_GD_HI22))
    163       1.1       eeh 
    164      1.16   mycroft static const long reloc_target_bitmask[] = {
    165       1.1       eeh #define _BM(x)	(~(-(1ULL << (x))))
    166       1.1       eeh 	0,				/* NONE */
    167       1.1       eeh 	_BM(8), _BM(16), _BM(32),	/* RELOC_8, _16, _32 */
    168       1.1       eeh 	_BM(8), _BM(16), _BM(32),	/* DISP8, DISP16, DISP32 */
    169       1.1       eeh 	_BM(30), _BM(22),		/* WDISP30, WDISP22 */
    170       1.1       eeh 	_BM(22), _BM(22),		/* HI22, _22 */
    171       1.1       eeh 	_BM(13), _BM(10),		/* RELOC_13, _LO10 */
    172       1.1       eeh 	_BM(10), _BM(13), _BM(22),	/* GOT10, GOT13, GOT22 */
    173       1.1       eeh 	_BM(10), _BM(22),		/* _PC10, _PC22 */
    174       1.1       eeh 	_BM(30), 0,			/* _WPLT30, _COPY */
    175      1.56    martin 	-1, _BM(32), -1,		/* _GLOB_DAT, JMP_SLOT, _RELATIVE */
    176       1.1       eeh 	_BM(32), _BM(32),		/* _UA32, PLT32 */
    177       1.1       eeh 	_BM(22), _BM(10),		/* _HIPLT22, LOPLT10 */
    178       1.1       eeh 	_BM(32), _BM(22), _BM(10),	/* _PCPLT32, _PCPLT22, _PCPLT10 */
    179       1.1       eeh 	_BM(10), _BM(11), -1,		/* _10, _11, _64 */
    180      1.59    martin 	_BM(13), _BM(22),		/* _OLO10, _HH22 */
    181       1.1       eeh 	_BM(10), _BM(22),		/* _HM10, _LM22 */
    182       1.1       eeh 	_BM(22), _BM(10), _BM(22),	/* _PC_HH22, _PC_HM10, _PC_LM22 */
    183       1.1       eeh 	_BM(16), _BM(19),		/* _WDISP16, _WDISP19 */
    184       1.1       eeh 	-1,				/* GLOB_JMP */
    185      1.54    martin 	_BM(7), _BM(5), _BM(6),		/* _7, _5, _6 */
    186       1.1       eeh 	-1, -1,				/* DISP64, PLT64 */
    187       1.1       eeh 	_BM(22), _BM(13),		/* HIX22, LOX10 */
    188      1.55    martin 	_BM(22), _BM(10), _BM(12),	/* H44, M44, L44 */
    189       1.1       eeh 	-1, -1, _BM(16),		/* REGISTER, UA64, UA16 */
    190       1.1       eeh #undef _BM
    191       1.1       eeh };
    192       1.1       eeh #define RELOC_VALUE_BITMASK(t)	(reloc_target_bitmask[t])
    193       1.1       eeh 
    194       1.1       eeh /*
    195       1.1       eeh  * Instruction templates:
    196       1.1       eeh  */
    197       1.1       eeh 
    198       1.1       eeh 
    199      1.26   mycroft /* %hi(v)/%lo(v) with variable shift */
    200      1.26   mycroft #define	HIVAL(v, s)	(((v) >> (s)) & 0x003fffff)
    201      1.26   mycroft #define LOVAL(v, s)	(((v) >> (s)) & 0x000003ff)
    202       1.1       eeh 
    203      1.20   mycroft void _rtld_bind_start_0(long, long);
    204      1.20   mycroft void _rtld_bind_start_1(long, long);
    205      1.18   mycroft void _rtld_relocate_nonplt_self(Elf_Dyn *, Elf_Addr);
    206      1.34     skrll caddr_t _rtld_bind(const Obj_Entry *, Elf_Word);
    207       1.1       eeh 
    208       1.1       eeh /*
    209       1.1       eeh  * Install rtld function call into this PLT slot.
    210       1.1       eeh  */
    211      1.29   mycroft #define	SAVE		0x9de3bf50	/* i.e. `save %sp,-176,%sp' */
    212       1.1       eeh #define	SETHI_l0	0x21000000
    213       1.1       eeh #define	SETHI_l1	0x23000000
    214       1.1       eeh #define	OR_l0_l0	0xa0142000
    215       1.1       eeh #define	SLLX_l0_32_l0	0xa12c3020
    216       1.1       eeh #define	OR_l0_l1_l0	0xa0140011
    217      1.26   mycroft #define	JMPL_l0_o0	0x91c42000
    218      1.26   mycroft #define	MOV_g1_o1	0x92100001
    219       1.1       eeh 
    220      1.36     skrll void _rtld_install_plt(Elf_Word *, Elf_Addr);
    221      1.36     skrll static inline int _rtld_relocate_plt_object(const Obj_Entry *,
    222      1.36     skrll     const Elf_Rela *, Elf_Addr *);
    223       1.1       eeh 
    224       1.1       eeh void
    225      1.34     skrll _rtld_install_plt(Elf_Word *pltgot, Elf_Addr proc)
    226       1.1       eeh {
    227       1.1       eeh 	pltgot[0] = SAVE;
    228       1.1       eeh 	pltgot[1] = SETHI_l0  | HIVAL(proc, 42);
    229       1.1       eeh 	pltgot[2] = SETHI_l1  | HIVAL(proc, 10);
    230      1.26   mycroft 	pltgot[3] = OR_l0_l0  | LOVAL(proc, 32);
    231       1.1       eeh 	pltgot[4] = SLLX_l0_32_l0;
    232       1.1       eeh 	pltgot[5] = OR_l0_l1_l0;
    233      1.26   mycroft 	pltgot[6] = JMPL_l0_o0 | LOVAL(proc, 0);
    234      1.26   mycroft 	pltgot[7] = MOV_g1_o1;
    235       1.1       eeh }
    236       1.2       eeh 
    237       1.6   mycroft void
    238       1.6   mycroft _rtld_setup_pltgot(const Obj_Entry *obj)
    239       1.6   mycroft {
    240       1.6   mycroft 	/*
    241       1.6   mycroft 	 * On sparc64 we got troubles.
    242       1.6   mycroft 	 *
    243       1.6   mycroft 	 * Instructions are 4 bytes long.
    244       1.6   mycroft 	 * Elf[64]_Addr is 8 bytes long, so are our pltglot[]
    245       1.6   mycroft 	 * array entries.
    246       1.6   mycroft 	 * Each PLT entry jumps to PLT0 to enter the dynamic
    247       1.6   mycroft 	 * linker.
    248       1.6   mycroft 	 * Loading an arbitrary 64-bit pointer takes 6
    249       1.6   mycroft 	 * instructions and 2 registers.
    250       1.6   mycroft 	 *
    251       1.6   mycroft 	 * Somehow we need to issue a save to get a new stack
    252       1.6   mycroft 	 * frame, load the address of the dynamic linker, and
    253       1.6   mycroft 	 * jump there, in 8 instructions or less.
    254       1.6   mycroft 	 *
    255       1.6   mycroft 	 * Oh, we need to fill out both PLT0 and PLT1.
    256       1.6   mycroft 	 */
    257       1.6   mycroft 	{
    258       1.6   mycroft 		Elf_Word *entry = (Elf_Word *)obj->pltgot;
    259       1.6   mycroft 
    260       1.6   mycroft 		/* Install in entries 0 and 1 */
    261       1.6   mycroft 		_rtld_install_plt(&entry[0], (Elf_Addr) &_rtld_bind_start_0);
    262       1.6   mycroft 		_rtld_install_plt(&entry[8], (Elf_Addr) &_rtld_bind_start_1);
    263       1.6   mycroft 
    264       1.6   mycroft 		/*
    265       1.6   mycroft 		 * Install the object reference in first slot
    266       1.6   mycroft 		 * of entry 2.
    267       1.6   mycroft 		 */
    268       1.6   mycroft 		obj->pltgot[8] = (Elf_Addr) obj;
    269       1.6   mycroft 	}
    270       1.8   mycroft }
    271       1.8   mycroft 
    272      1.18   mycroft void
    273      1.34     skrll _rtld_relocate_nonplt_self(Elf_Dyn *dynp, Elf_Addr relocbase)
    274      1.18   mycroft {
    275      1.18   mycroft 	const Elf_Rela *rela = 0, *relalim;
    276      1.18   mycroft 	Elf_Addr relasz = 0;
    277      1.18   mycroft 	Elf_Addr *where;
    278      1.18   mycroft 
    279      1.18   mycroft 	for (; dynp->d_tag != DT_NULL; dynp++) {
    280      1.18   mycroft 		switch (dynp->d_tag) {
    281      1.18   mycroft 		case DT_RELA:
    282      1.18   mycroft 			rela = (const Elf_Rela *)(relocbase + dynp->d_un.d_ptr);
    283      1.18   mycroft 			break;
    284      1.18   mycroft 		case DT_RELASZ:
    285      1.18   mycroft 			relasz = dynp->d_un.d_val;
    286      1.18   mycroft 			break;
    287      1.18   mycroft 		}
    288      1.18   mycroft 	}
    289      1.44     lukem 	relalim = (const Elf_Rela *)((const uint8_t *)rela + relasz);
    290      1.18   mycroft 	for (; rela < relalim; rela++) {
    291      1.18   mycroft 		where = (Elf_Addr *)(relocbase + rela->r_offset);
    292      1.18   mycroft 		*where = (Elf_Addr)(relocbase + rela->r_addend);
    293      1.18   mycroft 	}
    294      1.18   mycroft }
    295      1.18   mycroft 
    296       1.8   mycroft int
    297      1.47     joerg _rtld_relocate_nonplt_objects(Obj_Entry *obj)
    298       1.8   mycroft {
    299       1.9   mycroft 	const Elf_Rela *rela;
    300      1.40    martin 	const Elf_Sym *def = NULL;
    301      1.40    martin 	const Obj_Entry *defobj = NULL;
    302      1.61     joerg 	unsigned long last_symnum = ULONG_MAX;
    303      1.18   mycroft 
    304       1.9   mycroft 	for (rela = obj->rela; rela < obj->relalim; rela++) {
    305       1.9   mycroft 		Elf_Addr *where;
    306       1.9   mycroft 		Elf_Word type;
    307       1.9   mycroft 		Elf_Addr value = 0, mask;
    308      1.61     joerg 		unsigned long symnum;
    309       1.9   mycroft 
    310       1.9   mycroft 		where = (Elf_Addr *) (obj->relocbase + rela->r_offset);
    311       1.9   mycroft 
    312       1.9   mycroft 		type = ELF_R_TYPE(rela->r_info);
    313       1.9   mycroft 		if (type == R_TYPE(NONE))
    314      1.12   mycroft 			continue;
    315       1.9   mycroft 
    316      1.53    martin 		/* OLO10 relocations have extra info */
    317      1.53    martin 		if ((type & 0x00ff) == R_SPARC_OLO10)
    318      1.53    martin 			type = R_SPARC_OLO10;
    319      1.53    martin 
    320      1.23   mycroft 		/* We do JMP_SLOTs in _rtld_bind() below */
    321       1.9   mycroft 		if (type == R_TYPE(JMP_SLOT))
    322      1.12   mycroft 			continue;
    323       1.9   mycroft 
    324      1.65     joerg 		/* IFUNC relocations are handled in _rtld_call_ifunc */
    325      1.65     joerg 		if (type == R_TYPE(IRELATIVE)) {
    326      1.65     joerg 			if (obj->ifunc_remaining_nonplt == 0)
    327      1.65     joerg 				obj->ifunc_remaining_nonplt = rela - obj->rela + 1;
    328      1.65     joerg 			continue;
    329      1.65     joerg 		}
    330      1.65     joerg 
    331       1.9   mycroft 		/* COPY relocs are also handled elsewhere */
    332       1.9   mycroft 		if (type == R_TYPE(COPY))
    333      1.12   mycroft 			continue;
    334       1.8   mycroft 
    335       1.9   mycroft 		/*
    336       1.9   mycroft 		 * We use the fact that relocation types are an `enum'
    337      1.52    martin 		 * Note: R_SPARC_TLS_TPOFF64 is currently numerically largest.
    338       1.9   mycroft 		 */
    339      1.53    martin 		if (type > R_TYPE(TLS_TPOFF64)) {
    340      1.53    martin 			dbg(("unknown relocation type %x at %p", type, rela));
    341      1.53    martin 			return -1;
    342      1.53    martin 		}
    343       1.8   mycroft 
    344       1.9   mycroft 		value = rela->r_addend;
    345       1.8   mycroft 
    346      1.61     joerg 		if (RELOC_RESOLVE_SYMBOL(type) || RELOC_TLS(type)) {
    347      1.61     joerg 			symnum = ELF_R_SYM(rela->r_info);
    348      1.61     joerg 			if (last_symnum != symnum) {
    349      1.61     joerg 				last_symnum = symnum;
    350      1.61     joerg 				def = _rtld_find_symdef(symnum, obj, &defobj,
    351      1.61     joerg 				    false);
    352      1.61     joerg 				if (def == NULL)
    353      1.61     joerg 					return -1;
    354      1.61     joerg 			}
    355      1.61     joerg 		}
    356      1.61     joerg 
    357       1.9   mycroft 		/*
    358      1.52    martin 		 * Handle TLS relocations here, they are different.
    359      1.52    martin 		 */
    360      1.52    martin 		if (RELOC_TLS(type)) {
    361      1.52    martin 			switch (type) {
    362      1.60     joerg 			case R_TYPE(TLS_DTPMOD64):
    363      1.60     joerg 				*where = (Elf64_Addr)defobj->tlsindex;
    364      1.60     joerg 
    365      1.60     joerg 				rdbg(("TLS_DTPMOD64 %s in %s --> %p",
    366      1.60     joerg 				    obj->strtab +
    367      1.60     joerg 				    obj->symtab[symnum].st_name,
    368      1.60     joerg 				    obj->path, (void *)*where));
    369      1.60     joerg 
    370      1.60     joerg 				break;
    371      1.60     joerg 
    372      1.60     joerg 			case R_TYPE(TLS_DTPOFF64):
    373      1.60     joerg 				*where = (Elf64_Addr)(def->st_value
    374      1.60     joerg 				    + rela->r_addend);
    375      1.60     joerg 
    376      1.60     joerg 				rdbg(("DTPOFF64 %s in %s --> %p",
    377      1.60     joerg 				    obj->strtab +
    378      1.60     joerg 				        obj->symtab[symnum].st_name,
    379      1.60     joerg 				    obj->path, (void *)*where));
    380      1.60     joerg 
    381      1.60     joerg 				break;
    382      1.60     joerg 
    383      1.60     joerg 			case R_TYPE(TLS_TPOFF64):
    384      1.60     joerg 				if (!defobj->tls_done &&
    385      1.60     joerg 					_rtld_tls_offset_allocate(obj))
    386      1.60     joerg 					     return -1;
    387      1.60     joerg 
    388      1.60     joerg 				*where = (Elf64_Addr)(def->st_value -
    389      1.60     joerg 				    defobj->tlsoffset + rela->r_addend);
    390      1.60     joerg 
    391      1.60     joerg 				rdbg(("TLS_TPOFF64 %s in %s --> %p",
    392      1.60     joerg 				    obj->strtab + obj->symtab[symnum].st_name,
    393      1.60     joerg 				    obj->path, (void *)*where));
    394      1.52    martin 
    395      1.60     joerg 				break;
    396      1.52    martin 			}
    397      1.52    martin 			continue;
    398      1.52    martin 		}
    399      1.52    martin 
    400      1.52    martin 		/*
    401      1.18   mycroft 		 * Handle relative relocs here, as an optimization.
    402       1.9   mycroft 		 */
    403      1.17   mycroft 		if (type == R_TYPE(RELATIVE)) {
    404       1.9   mycroft 			*where = (Elf_Addr)(obj->relocbase + value);
    405      1.21   mycroft 			rdbg(("RELATIVE in %s --> %p", obj->path,
    406      1.18   mycroft 			    (void *)*where));
    407      1.12   mycroft 			continue;
    408       1.9   mycroft 		}
    409       1.8   mycroft 
    410       1.9   mycroft 		if (RELOC_RESOLVE_SYMBOL(type)) {
    411       1.9   mycroft 			/* Add in the symbol's absolute address */
    412       1.9   mycroft 			value += (Elf_Addr)(defobj->relocbase + def->st_value);
    413       1.9   mycroft 		}
    414       1.8   mycroft 
    415      1.53    martin 		if (type == R_SPARC_OLO10) {
    416      1.53    martin 			value = (value & 0x3ff)
    417      1.53    martin 			    + (((Elf64_Xword)rela->r_info<<32)>>40);
    418      1.53    martin 		}
    419      1.53    martin 
    420       1.9   mycroft 		if (RELOC_PC_RELATIVE(type)) {
    421       1.9   mycroft 			value -= (Elf_Addr)where;
    422       1.9   mycroft 		}
    423       1.8   mycroft 
    424       1.9   mycroft 		if (RELOC_BASE_RELATIVE(type)) {
    425       1.9   mycroft 			/*
    426       1.9   mycroft 			 * Note that even though sparcs use `Elf_rela'
    427       1.9   mycroft 			 * exclusively we still need the implicit memory addend
    428       1.9   mycroft 			 * in relocations referring to GOT entries.
    429       1.9   mycroft 			 * Undoubtedly, someone f*cked this up in the distant
    430       1.9   mycroft 			 * past, and now we're stuck with it in the name of
    431       1.9   mycroft 			 * compatibility for all eternity..
    432       1.9   mycroft 			 *
    433       1.9   mycroft 			 * In any case, the implicit and explicit should be
    434       1.9   mycroft 			 * mutually exclusive. We provide a check for that
    435       1.9   mycroft 			 * here.
    436       1.9   mycroft 			 */
    437       1.8   mycroft #ifdef DIAGNOSTIC
    438       1.9   mycroft 			if (value != 0 && *where != 0) {
    439       1.9   mycroft 				xprintf("BASE_REL(%s): where=%p, *where 0x%lx, "
    440       1.9   mycroft 					"addend=0x%lx, base %p\n",
    441       1.9   mycroft 					obj->path, where, *where,
    442       1.9   mycroft 					rela->r_addend, obj->relocbase);
    443       1.9   mycroft 			}
    444       1.9   mycroft #endif
    445       1.9   mycroft 			/* XXXX -- apparently we ignore the preexisting value */
    446       1.9   mycroft 			value += (Elf_Addr)(obj->relocbase);
    447       1.8   mycroft 		}
    448       1.8   mycroft 
    449       1.9   mycroft 		mask = RELOC_VALUE_BITMASK(type);
    450       1.9   mycroft 		value >>= RELOC_VALUE_RIGHTSHIFT(type);
    451       1.9   mycroft 		value &= mask;
    452       1.9   mycroft 
    453       1.9   mycroft 		if (RELOC_UNALIGNED(type)) {
    454       1.9   mycroft 			/* Handle unaligned relocations. */
    455       1.9   mycroft 			Elf_Addr tmp = 0;
    456       1.9   mycroft 			char *ptr = (char *)where;
    457       1.9   mycroft 			int i, size = RELOC_TARGET_SIZE(type)/8;
    458       1.9   mycroft 
    459       1.9   mycroft 			/* Read it in one byte at a time. */
    460       1.9   mycroft 			for (i=0; i<size; i++)
    461       1.9   mycroft 				tmp = (tmp << 8) | ptr[i];
    462       1.9   mycroft 
    463       1.9   mycroft 			tmp &= ~mask;
    464       1.9   mycroft 			tmp |= value;
    465       1.9   mycroft 
    466       1.9   mycroft 			/* Write it back out. */
    467       1.9   mycroft 			for (i=0; i<size; i++)
    468       1.9   mycroft 				ptr[i] = ((tmp >> (8*i)) & 0xff);
    469       1.8   mycroft #ifdef RTLD_DEBUG_RELOC
    470       1.9   mycroft 			value = (Elf_Addr)tmp;
    471       1.8   mycroft #endif
    472       1.8   mycroft 
    473       1.9   mycroft 		} else if (RELOC_TARGET_SIZE(type) > 32) {
    474       1.9   mycroft 			*where &= ~mask;
    475       1.9   mycroft 			*where |= value;
    476       1.8   mycroft #ifdef RTLD_DEBUG_RELOC
    477       1.9   mycroft 			value = (Elf_Addr)*where;
    478       1.8   mycroft #endif
    479       1.9   mycroft 		} else {
    480       1.9   mycroft 			Elf32_Addr *where32 = (Elf32_Addr *)where;
    481       1.8   mycroft 
    482       1.9   mycroft 			*where32 &= ~mask;
    483       1.9   mycroft 			*where32 |= value;
    484       1.8   mycroft #ifdef RTLD_DEBUG_RELOC
    485       1.9   mycroft 			value = (Elf_Addr)*where32;
    486       1.8   mycroft #endif
    487       1.9   mycroft 		}
    488       1.8   mycroft 
    489       1.8   mycroft #ifdef RTLD_DEBUG_RELOC
    490       1.9   mycroft 		if (RELOC_RESOLVE_SYMBOL(type)) {
    491      1.21   mycroft 			rdbg(("%s %s in %s --> %p in %s", reloc_names[type],
    492      1.11   mycroft 			    obj->strtab + obj->symtab[symnum].st_name,
    493      1.33    petrov 			    obj->path, (void *)value, defobj->path));
    494      1.11   mycroft 		} else {
    495      1.21   mycroft 			rdbg(("%s in %s --> %p", reloc_names[type],
    496      1.33    petrov 			    obj->path, (void *)value));
    497       1.9   mycroft 		}
    498       1.9   mycroft #endif
    499       1.8   mycroft 	}
    500      1.13   mycroft 	return (0);
    501      1.13   mycroft }
    502      1.13   mycroft 
    503      1.13   mycroft int
    504      1.64     joerg _rtld_relocate_plt_lazy(Obj_Entry *obj)
    505      1.13   mycroft {
    506      1.65     joerg 	const Elf_Rela *rela;
    507      1.65     joerg 
    508      1.65     joerg 	for (rela = obj->pltrelalim; rela-- > obj->pltrela; ) {
    509      1.65     joerg 		if (ELF_R_TYPE(rela->r_info) == R_TYPE(JMP_IREL))
    510      1.65     joerg 			obj->ifunc_remaining = obj->pltrelalim - rela + 1;
    511      1.65     joerg 	}
    512      1.65     joerg 
    513      1.65     joerg 	return 0;
    514      1.23   mycroft }
    515      1.23   mycroft 
    516      1.23   mycroft caddr_t
    517      1.34     skrll _rtld_bind(const Obj_Entry *obj, Elf_Word reloff)
    518      1.23   mycroft {
    519      1.24   mycroft 	const Elf_Rela *rela = obj->pltrela + reloff;
    520      1.35    martin 	Elf_Addr result;
    521      1.35    martin 	int err;
    522      1.23   mycroft 
    523      1.39       mrg 	result = 0;	/* XXX gcc */
    524      1.39       mrg 
    525      1.67     joerg 	if (ELF_R_TYPE(obj->pltrela->r_info) == R_TYPE(JMP_SLOT) ||
    526      1.67     joerg 	    ELF_R_TYPE(obj->pltrela->r_info) == R_TYPE(JMP_IREL)) {
    527      1.23   mycroft 		/*
    528      1.23   mycroft 		 * XXXX
    529      1.23   mycroft 		 *
    530      1.23   mycroft 		 * The first four PLT entries are reserved.  There is some
    531      1.23   mycroft 		 * disagreement whether they should have associated relocation
    532      1.23   mycroft 		 * entries.  Both the SPARC 32-bit and 64-bit ELF
    533      1.23   mycroft 		 * specifications say that they should have relocation entries,
    534      1.23   mycroft 		 * but the 32-bit SPARC binutils do not generate them, and now
    535      1.23   mycroft 		 * the 64-bit SPARC binutils have stopped generating them too.
    536      1.23   mycroft 		 *
    537      1.23   mycroft 		 * So, to provide binary compatibility, we will check the first
    538      1.23   mycroft 		 * entry, if it is reserved it should not be of the type
    539      1.67     joerg 		 * JMP_SLOT or JMP_REL.  If it is either of those, then
    540      1.67     joerg 		 * the 4 reserved entries were not generated and our index
    541      1.67     joerg 		 * is 4 entries too far.
    542      1.23   mycroft 		 */
    543      1.23   mycroft 		rela -= 4;
    544      1.23   mycroft 	}
    545      1.32   thorpej 
    546      1.51     joerg 	_rtld_shared_enter();
    547      1.35    martin 	err = _rtld_relocate_plt_object(obj, rela, &result);
    548      1.46  christos 	if (err)
    549      1.35    martin 		_rtld_die();
    550      1.51     joerg 	_rtld_shared_exit();
    551      1.35    martin 
    552      1.35    martin 	return (caddr_t)result;
    553      1.35    martin }
    554      1.35    martin 
    555      1.35    martin int
    556      1.35    martin _rtld_relocate_plt_objects(const Obj_Entry *obj)
    557      1.35    martin {
    558      1.35    martin 	const Elf_Rela *rela;
    559      1.35    martin 
    560      1.35    martin 	rela = obj->pltrela;
    561      1.35    martin 
    562      1.35    martin 	/*
    563      1.35    martin 	 * Check for first four reserved entries - and skip them.
    564      1.35    martin 	 * See above for details.
    565      1.35    martin 	 */
    566      1.67     joerg 	if (ELF_R_TYPE(obj->pltrela->r_info) != R_TYPE(JMP_SLOT) &&
    567      1.67     joerg 	    ELF_R_TYPE(obj->pltrela->r_info) != R_TYPE(JMP_IREL))
    568      1.35    martin 		rela += 4;
    569      1.35    martin 
    570      1.35    martin 	for (; rela < obj->pltrelalim; rela++)
    571      1.35    martin 		if (_rtld_relocate_plt_object(obj, rela, NULL) < 0)
    572      1.35    martin 			return -1;
    573      1.35    martin 
    574      1.35    martin 	return 0;
    575      1.35    martin }
    576      1.35    martin 
    577      1.65     joerg static inline void
    578      1.65     joerg _rtld_write_plt(Elf_Word *where, Elf_Addr value, const Elf_Rela *rela,
    579      1.65     joerg     const Obj_Entry *obj)
    580      1.35    martin {
    581      1.65     joerg 	if (rela && rela->r_addend) {
    582      1.23   mycroft 		Elf_Addr *ptr = (Elf_Addr *)where;
    583      1.23   mycroft 		/*
    584      1.48     skrll 		 * This entry is >= 32768.  The relocations points to a
    585      1.28   mycroft 		 * PC-relative pointer to the bind_0 stub at the top of the
    586      1.28   mycroft 		 * PLT section.  Update it to point to the target function.
    587      1.23   mycroft 		 */
    588      1.27   mycroft 		ptr[0] += value - (Elf_Addr)obj->pltgot;
    589      1.23   mycroft 	} else {
    590  1.67.2.1  pgoyette 		sparc_write_branch(where + 1, (void *)value);
    591      1.65     joerg 	}
    592      1.65     joerg }
    593      1.65     joerg 
    594      1.65     joerg /*
    595      1.65     joerg  * New inline function that is called by _rtld_relocate_plt_object and
    596      1.65     joerg  * _rtld_bind
    597      1.65     joerg  */
    598      1.65     joerg static inline int
    599      1.65     joerg _rtld_relocate_plt_object(const Obj_Entry *obj, const Elf_Rela *rela,
    600      1.65     joerg     Elf_Addr *tp)
    601      1.65     joerg {
    602      1.65     joerg 	Elf_Word *where = (Elf_Word *)(obj->relocbase + rela->r_offset);
    603      1.65     joerg 	const Elf_Sym *def;
    604      1.65     joerg 	const Obj_Entry *defobj;
    605      1.65     joerg 	Elf_Addr value;
    606      1.65     joerg 	unsigned long info = rela->r_info;
    607      1.65     joerg 
    608      1.65     joerg 	if (ELF_R_TYPE(info) == R_TYPE(JMP_IREL))
    609      1.65     joerg 		return 0;
    610      1.65     joerg 
    611      1.65     joerg 	assert(ELF_R_TYPE(info) == R_TYPE(JMP_SLOT));
    612      1.65     joerg 
    613      1.65     joerg 	def = _rtld_find_plt_symdef(ELF_R_SYM(info), obj, &defobj, tp != NULL);
    614      1.65     joerg 	if (__predict_false(def == NULL))
    615      1.65     joerg 		return -1;
    616      1.65     joerg 	if (__predict_false(def == &_rtld_sym_zero))
    617      1.65     joerg 		return 0;
    618      1.23   mycroft 
    619      1.65     joerg 	if (ELF_ST_TYPE(def->st_info) == STT_GNU_IFUNC) {
    620      1.65     joerg 		if (tp == NULL)
    621      1.65     joerg 			return 0;
    622      1.65     joerg 		value = _rtld_resolve_ifunc(defobj, def);
    623      1.65     joerg 	} else {
    624      1.65     joerg 		value = (Elf_Addr)(defobj->relocbase + def->st_value);
    625      1.23   mycroft 	}
    626      1.65     joerg 	rdbg(("bind now/fixup in %s at %p --> new=%p",
    627      1.65     joerg 	    defobj->strtab + def->st_name, (void*)where, (void *)value));
    628      1.65     joerg 
    629      1.65     joerg 	_rtld_write_plt(where, value, rela, obj);
    630      1.23   mycroft 
    631      1.35    martin 	if (tp)
    632      1.35    martin 		*tp = value;
    633      1.35    martin 
    634      1.35    martin 	return 0;
    635       1.6   mycroft }
    636      1.65     joerg 
    637      1.65     joerg void
    638      1.65     joerg _rtld_call_ifunc(Obj_Entry *obj, sigset_t *mask, u_int cur_objgen)
    639      1.65     joerg {
    640      1.65     joerg 	const Elf_Rela *rela;
    641      1.65     joerg 	Elf_Addr *where;
    642      1.65     joerg 	Elf_Word *where2;
    643      1.65     joerg 	Elf_Addr target;
    644      1.65     joerg 
    645      1.65     joerg 	while (obj->ifunc_remaining > 0 && _rtld_objgen == cur_objgen) {
    646      1.65     joerg 		rela = obj->pltrelalim - --obj->ifunc_remaining;
    647      1.65     joerg 		if (ELF_R_TYPE(rela->r_info) != R_TYPE(JMP_IREL))
    648      1.65     joerg 			continue;
    649      1.65     joerg 		where2 = (Elf_Word *)(obj->relocbase + rela->r_offset);
    650      1.65     joerg 		target = (Elf_Addr)(obj->relocbase + rela->r_addend);
    651      1.65     joerg 		_rtld_exclusive_exit(mask);
    652      1.65     joerg 		target = _rtld_resolve_ifunc2(obj, target);
    653      1.65     joerg 		_rtld_exclusive_enter(mask);
    654  1.67.2.1  pgoyette 		sparc_write_branch(where2 + 1, (void *)target);
    655      1.65     joerg 	}
    656      1.65     joerg 
    657      1.65     joerg 	while (obj->ifunc_remaining_nonplt > 0 && _rtld_objgen == cur_objgen) {
    658      1.65     joerg 		rela = obj->relalim - --obj->ifunc_remaining_nonplt;
    659      1.65     joerg 		if (ELF_R_TYPE(rela->r_info) != R_TYPE(IRELATIVE))
    660      1.65     joerg 			continue;
    661      1.65     joerg 		where = (Elf_Addr *)(obj->relocbase + rela->r_offset);
    662      1.65     joerg 		target = (Elf_Addr)(obj->relocbase + rela->r_addend);
    663      1.65     joerg 		_rtld_exclusive_exit(mask);
    664      1.65     joerg 		target = _rtld_resolve_ifunc2(obj, target);
    665      1.65     joerg 		_rtld_exclusive_enter(mask);
    666      1.65     joerg 		if (*where != target)
    667      1.65     joerg 			*where = target;
    668      1.65     joerg 	}
    669      1.65     joerg }
    670