exec_elf32.c revision 1.4
11.4Sfvdl/* $NetBSD: exec_elf32.c,v 1.4 1996/01/16 23:07:18 fvdl Exp $ */ 21.1Sfvdl 31.1Sfvdl/* 41.1Sfvdl * Copyright (c) 1994 Christos Zoulas 51.1Sfvdl * All rights reserved. 61.1Sfvdl * 71.1Sfvdl * Redistribution and use in source and binary forms, with or without 81.1Sfvdl * modification, are permitted provided that the following conditions 91.1Sfvdl * are met: 101.1Sfvdl * 1. Redistributions of source code must retain the above copyright 111.1Sfvdl * notice, this list of conditions and the following disclaimer. 121.1Sfvdl * 2. Redistributions in binary form must reproduce the above copyright 131.1Sfvdl * notice, this list of conditions and the following disclaimer in the 141.1Sfvdl * documentation and/or other materials provided with the distribution. 151.1Sfvdl * 3. The name of the author may not be used to endorse or promote products 161.1Sfvdl * derived from this software without specific prior written permission 171.1Sfvdl * 181.1Sfvdl * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR 191.1Sfvdl * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES 201.1Sfvdl * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. 211.1Sfvdl * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, 221.1Sfvdl * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 231.1Sfvdl * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 241.1Sfvdl * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 251.1Sfvdl * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 261.1Sfvdl * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF 271.1Sfvdl * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 281.1Sfvdl * 291.1Sfvdl */ 301.1Sfvdl 311.1Sfvdl#include <sys/param.h> 321.1Sfvdl#include <sys/systm.h> 331.1Sfvdl#include <sys/kernel.h> 341.1Sfvdl#include <sys/proc.h> 351.1Sfvdl#include <sys/malloc.h> 361.1Sfvdl#include <sys/namei.h> 371.1Sfvdl#include <sys/vnode.h> 381.1Sfvdl#include <sys/exec.h> 391.1Sfvdl#include <sys/exec_elf.h> 401.1Sfvdl 411.1Sfvdl#include <sys/mman.h> 421.1Sfvdl#include <vm/vm.h> 431.1Sfvdl#include <vm/vm_param.h> 441.1Sfvdl#include <vm/vm_map.h> 451.1Sfvdl 461.1Sfvdl#include <machine/cpu.h> 471.1Sfvdl#include <machine/reg.h> 481.1Sfvdl#include <machine/exec.h> 491.1Sfvdl 501.1Sfvdl#ifdef COMPAT_LINUX 511.1Sfvdl#include <compat/linux/linux_exec.h> 521.1Sfvdl#endif 531.1Sfvdl 541.1Sfvdl#ifdef COMPAT_SVR4 551.1Sfvdl#include <compat/svr4/svr4_exec.h> 561.1Sfvdl#endif 571.1Sfvdl 581.1Sfvdlint (*elf_probe_funcs[])() = { 591.1Sfvdl#ifdef COMPAT_SVR4 601.1Sfvdl svr4_elf_probe, 611.1Sfvdl#endif 621.1Sfvdl#ifdef COMPAT_LINUX 631.1Sfvdl linux_elf_probe 641.1Sfvdl#endif 651.1Sfvdl}; 661.1Sfvdl 671.1Sfvdlstatic int elf_read_from __P((struct proc *, struct vnode *, u_long, 681.1Sfvdl caddr_t, int)); 691.1Sfvdlstatic void elf_load_psection __P((struct exec_vmcmd_set *, 701.1Sfvdl struct vnode *, Elf32_Phdr *, u_long *, u_long *, int *)); 711.1Sfvdl 721.1Sfvdl#define ELF_ALIGN(a, b) ((a) & ~((b) - 1)) 731.1Sfvdl 741.1Sfvdl/* 751.1Sfvdl * Copy arguments onto the stack in the normal way, but add some 761.1Sfvdl * extra information in case of dynamic binding. 771.1Sfvdl */ 781.1Sfvdlvoid * 791.1Sfvdlelf_copyargs(pack, arginfo, stack, argp) 801.1Sfvdl struct exec_package *pack; 811.1Sfvdl struct ps_strings *arginfo; 821.1Sfvdl void *stack; 831.1Sfvdl void *argp; 841.1Sfvdl{ 851.1Sfvdl size_t len; 861.4Sfvdl AuxInfo ai[ELF_AUX_ENTRIES], *a; 871.1Sfvdl struct elf_args *ap; 881.1Sfvdl 891.4Sfvdl stack = copyargs(pack, arginfo, stack, argp); 901.4Sfvdl if (!stack) 911.1Sfvdl return NULL; 921.1Sfvdl 931.1Sfvdl /* 941.1Sfvdl * Push extra arguments on the stack needed by dynamically 951.1Sfvdl * linked binaries 961.1Sfvdl */ 971.1Sfvdl if ((ap = (struct elf_args *) pack->ep_emul_arg)) { 981.4Sfvdl a = ai; 991.1Sfvdl 1001.1Sfvdl a->au_id = AUX_phdr; 1011.1Sfvdl a->au_v = ap->arg_phaddr; 1021.1Sfvdl a++; 1031.1Sfvdl 1041.1Sfvdl a->au_id = AUX_phent; 1051.1Sfvdl a->au_v = ap->arg_phentsize; 1061.1Sfvdl a++; 1071.1Sfvdl 1081.1Sfvdl a->au_id = AUX_phnum; 1091.1Sfvdl a->au_v = ap->arg_phnum; 1101.1Sfvdl a++; 1111.1Sfvdl 1121.1Sfvdl a->au_id = AUX_pagesz; 1131.1Sfvdl a->au_v = NBPG; 1141.1Sfvdl a++; 1151.1Sfvdl 1161.1Sfvdl a->au_id = AUX_base; 1171.1Sfvdl a->au_v = ap->arg_interp; 1181.1Sfvdl a++; 1191.1Sfvdl 1201.1Sfvdl a->au_id = AUX_flags; 1211.1Sfvdl a->au_v = 0; 1221.1Sfvdl a++; 1231.1Sfvdl 1241.1Sfvdl a->au_id = AUX_entry; 1251.1Sfvdl a->au_v = ap->arg_entry; 1261.1Sfvdl a++; 1271.1Sfvdl 1281.1Sfvdl a->au_id = AUX_null; 1291.1Sfvdl a->au_v = 0; 1301.1Sfvdl a++; 1311.1Sfvdl 1321.1Sfvdl free((char *) ap, M_TEMP); 1331.4Sfvdl len = ELF_AUX_ENTRIES * sizeof (AuxInfo); 1341.4Sfvdl if (copyout(ai, stack, len)) 1351.4Sfvdl return NULL; 1361.4Sfvdl stack += len; 1371.1Sfvdl } 1381.4Sfvdl return stack; 1391.1Sfvdl} 1401.1Sfvdl 1411.1Sfvdl/* 1421.1Sfvdl * elf_check_header(): 1431.1Sfvdl * 1441.1Sfvdl * Check header for validity; return 0 of ok ENOEXEC if error 1451.1Sfvdl * 1461.1Sfvdl * XXX machine type needs to be moved to <machine/param.h> so 1471.1Sfvdl * just one comparison can be done. Unfortunately, there is both 1481.1Sfvdl * em_486 and em_386, so this would not work on the i386. 1491.1Sfvdl */ 1501.1Sfvdlint 1511.1Sfvdlelf_check_header(eh, type) 1521.1Sfvdl Elf32_Ehdr *eh; 1531.1Sfvdl int type; 1541.1Sfvdl{ 1551.3Sthorpej 1561.3Sthorpej if (bcmp(eh->e_ident, Elf32_e_ident, Elf32_e_siz) != 0) 1571.1Sfvdl return ENOEXEC; 1581.1Sfvdl 1591.1Sfvdl switch (eh->e_machine) { 1601.1Sfvdl /* XXX */ 1611.1Sfvdl#ifdef i386 1621.1Sfvdl case Elf32_em_386: 1631.1Sfvdl case Elf32_em_486: 1641.1Sfvdl#endif 1651.1Sfvdl#ifdef sparc 1661.1Sfvdl case Elf32_em_sparc: 1671.1Sfvdl#endif 1681.1Sfvdl break; 1691.1Sfvdl 1701.1Sfvdl default: 1711.1Sfvdl return ENOEXEC; 1721.1Sfvdl } 1731.1Sfvdl 1741.1Sfvdl if (eh->e_type != type) 1751.1Sfvdl return ENOEXEC; 1761.1Sfvdl 1771.1Sfvdl return 0; 1781.1Sfvdl} 1791.1Sfvdl 1801.1Sfvdl/* 1811.1Sfvdl * elf_load_psection(): 1821.1Sfvdl * 1831.1Sfvdl * Load a psection at the appropriate address 1841.1Sfvdl */ 1851.1Sfvdlstatic void 1861.1Sfvdlelf_load_psection(vcset, vp, ph, addr, size, prot) 1871.1Sfvdl struct exec_vmcmd_set *vcset; 1881.1Sfvdl struct vnode *vp; 1891.1Sfvdl Elf32_Phdr *ph; 1901.1Sfvdl u_long *addr; 1911.1Sfvdl u_long *size; 1921.1Sfvdl int *prot; 1931.1Sfvdl{ 1941.1Sfvdl u_long uaddr, msize, rm, rf; 1951.1Sfvdl long diff, offset; 1961.1Sfvdl 1971.1Sfvdl /* 1981.1Sfvdl * If the user specified an address, then we load there. 1991.1Sfvdl */ 2001.1Sfvdl if (*addr != ELF32_NO_ADDR) { 2011.1Sfvdl if (ph->p_align > 1) { 2021.1Sfvdl *addr = ELF_ALIGN(*addr + ph->p_align, ph->p_align); 2031.1Sfvdl uaddr = ELF_ALIGN(ph->p_vaddr, ph->p_align); 2041.1Sfvdl } else 2051.1Sfvdl uaddr = ph->p_vaddr; 2061.1Sfvdl diff = ph->p_vaddr - uaddr; 2071.1Sfvdl } else { 2081.1Sfvdl *addr = uaddr = ph->p_vaddr; 2091.1Sfvdl if (ph->p_align > 1) 2101.1Sfvdl *addr = ELF_ALIGN(uaddr, ph->p_align); 2111.1Sfvdl diff = uaddr - *addr; 2121.1Sfvdl } 2131.1Sfvdl 2141.1Sfvdl *prot |= (ph->p_flags & Elf32_pf_r) ? VM_PROT_READ : 0; 2151.1Sfvdl *prot |= (ph->p_flags & Elf32_pf_w) ? VM_PROT_WRITE : 0; 2161.1Sfvdl *prot |= (ph->p_flags & Elf32_pf_x) ? VM_PROT_EXECUTE : 0; 2171.1Sfvdl 2181.1Sfvdl offset = ph->p_offset - diff; 2191.1Sfvdl *size = ph->p_filesz + diff; 2201.1Sfvdl msize = ph->p_memsz + diff; 2211.1Sfvdl 2221.1Sfvdl NEW_VMCMD(vcset, vmcmd_map_readvn, *size, *addr, vp, offset, *prot); 2231.1Sfvdl 2241.1Sfvdl /* 2251.1Sfvdl * Check if we need to extend the size of the segment 2261.1Sfvdl */ 2271.1Sfvdl rm = round_page(*addr + msize); 2281.1Sfvdl rf = round_page(*addr + *size); 2291.1Sfvdl 2301.1Sfvdl if (rm != rf) { 2311.1Sfvdl NEW_VMCMD(vcset, vmcmd_map_zero, rm - rf, rf, NULLVP, 0, *prot); 2321.1Sfvdl *size = msize; 2331.1Sfvdl } 2341.1Sfvdl} 2351.1Sfvdl 2361.1Sfvdl/* 2371.1Sfvdl * elf_read_from(): 2381.1Sfvdl * 2391.1Sfvdl * Read from vnode into buffer at offset. 2401.1Sfvdl */ 2411.1Sfvdlstatic int 2421.1Sfvdlelf_read_from(p, vp, off, buf, size) 2431.1Sfvdl struct vnode *vp; 2441.1Sfvdl u_long off; 2451.1Sfvdl struct proc *p; 2461.1Sfvdl caddr_t buf; 2471.1Sfvdl int size; 2481.1Sfvdl{ 2491.1Sfvdl int error; 2501.1Sfvdl int resid; 2511.1Sfvdl 2521.1Sfvdl if ((error = vn_rdwr(UIO_READ, vp, buf, size, 2531.1Sfvdl off, UIO_SYSSPACE, IO_NODELOCKED, p->p_ucred, 2541.1Sfvdl &resid, p)) != 0) 2551.1Sfvdl return error; 2561.1Sfvdl /* 2571.1Sfvdl * See if we got all of it 2581.1Sfvdl */ 2591.1Sfvdl if (resid != 0) 2601.4Sfvdl return ENOEXEC; 2611.1Sfvdl return 0; 2621.1Sfvdl} 2631.1Sfvdl 2641.1Sfvdl/* 2651.1Sfvdl * elf_load_file(): 2661.1Sfvdl * 2671.1Sfvdl * Load a file (interpreter/library) pointed to by path 2681.1Sfvdl * [stolen from coff_load_shlib()]. Made slightly generic 2691.1Sfvdl * so it might be used externally. 2701.1Sfvdl */ 2711.1Sfvdlint 2721.1Sfvdlelf_load_file(p, path, vcset, entry, ap, last) 2731.1Sfvdl struct proc *p; 2741.1Sfvdl char *path; 2751.1Sfvdl struct exec_vmcmd_set *vcset; 2761.1Sfvdl u_long *entry; 2771.1Sfvdl struct elf_args *ap; 2781.1Sfvdl u_long *last; 2791.1Sfvdl{ 2801.1Sfvdl int error, i; 2811.1Sfvdl struct nameidata nd; 2821.1Sfvdl Elf32_Ehdr eh; 2831.1Sfvdl Elf32_Phdr *ph = NULL; 2841.1Sfvdl u_long phsize; 2851.1Sfvdl char *bp = NULL; 2861.1Sfvdl u_long addr = *last; 2871.1Sfvdl 2881.1Sfvdl bp = path; 2891.1Sfvdl /* 2901.1Sfvdl * 1. open file 2911.1Sfvdl * 2. read filehdr 2921.1Sfvdl * 3. map text, data, and bss out of it using VM_* 2931.1Sfvdl */ 2941.1Sfvdl NDINIT(&nd, LOOKUP, FOLLOW, UIO_SYSSPACE, path, p); 2951.1Sfvdl if ((error = namei(&nd)) != 0) { 2961.1Sfvdl return error; 2971.1Sfvdl } 2981.1Sfvdl if ((error = elf_read_from(p, nd.ni_vp, 0, (caddr_t) &eh, 2991.1Sfvdl sizeof(eh))) != 0) 3001.1Sfvdl goto bad; 3011.1Sfvdl 3021.1Sfvdl if ((error = elf_check_header(&eh, Elf32_et_dyn)) != 0) 3031.1Sfvdl goto bad; 3041.1Sfvdl 3051.1Sfvdl phsize = eh.e_phnum * sizeof(Elf32_Phdr); 3061.1Sfvdl ph = (Elf32_Phdr *) malloc(phsize, M_TEMP, M_WAITOK); 3071.1Sfvdl 3081.1Sfvdl if ((error = elf_read_from(p, nd.ni_vp, eh.e_phoff, 3091.1Sfvdl (caddr_t) ph, phsize)) != 0) 3101.1Sfvdl goto bad; 3111.1Sfvdl 3121.1Sfvdl /* 3131.1Sfvdl * Load all the necessary sections 3141.1Sfvdl */ 3151.1Sfvdl for (i = 0; i < eh.e_phnum; i++) { 3161.1Sfvdl u_long size = 0; 3171.1Sfvdl int prot = 0; 3181.1Sfvdl 3191.1Sfvdl switch (ph[i].p_type) { 3201.1Sfvdl case Elf32_pt_load: 3211.1Sfvdl elf_load_psection(vcset, nd.ni_vp, &ph[i], &addr, 3221.1Sfvdl &size, &prot); 3231.4Sfvdl /* If entry is within this section it must be text */ 3241.4Sfvdl if (eh.e_entry >= ph[i].p_vaddr && 3251.4Sfvdl eh.e_entry < (ph[i].p_vaddr + size)) { 3261.1Sfvdl *entry = addr + eh.e_entry; 3271.1Sfvdl ap->arg_interp = addr; 3281.1Sfvdl } 3291.1Sfvdl addr += size; 3301.1Sfvdl break; 3311.1Sfvdl 3321.1Sfvdl case Elf32_pt_dynamic: 3331.1Sfvdl case Elf32_pt_phdr: 3341.1Sfvdl case Elf32_pt_note: 3351.1Sfvdl break; 3361.1Sfvdl 3371.1Sfvdl default: 3381.1Sfvdl break; 3391.1Sfvdl } 3401.1Sfvdl } 3411.1Sfvdl 3421.1Sfvdlbad: 3431.1Sfvdl if (ph != NULL) 3441.1Sfvdl free((char *) ph, M_TEMP); 3451.1Sfvdl 3461.1Sfvdl *last = addr; 3471.1Sfvdl vrele(nd.ni_vp); 3481.1Sfvdl return error; 3491.1Sfvdl} 3501.1Sfvdl 3511.1Sfvdl/* 3521.1Sfvdl * exec_elf_makecmds(): Prepare an Elf binary's exec package 3531.1Sfvdl * 3541.1Sfvdl * First, set of the various offsets/lengths in the exec package. 3551.1Sfvdl * 3561.1Sfvdl * Then, mark the text image busy (so it can be demand paged) or error 3571.1Sfvdl * out if this is not possible. Finally, set up vmcmds for the 3581.1Sfvdl * text, data, bss, and stack segments. 3591.1Sfvdl * 3601.1Sfvdl * XXX no demand paging (yet?) 3611.1Sfvdl */ 3621.1Sfvdlint 3631.1Sfvdlexec_elf_makecmds(p, epp) 3641.1Sfvdl struct proc *p; 3651.1Sfvdl struct exec_package *epp; 3661.1Sfvdl{ 3671.1Sfvdl Elf32_Ehdr *eh = epp->ep_hdr; 3681.1Sfvdl Elf32_Phdr *ph, *pp; 3691.4Sfvdl Elf32_Addr phdr = 0; 3701.4Sfvdl int error, i, n, nload; 3711.1Sfvdl char interp[MAXPATHLEN]; 3721.1Sfvdl u_long pos = 0, phsize; 3731.1Sfvdl 3741.1Sfvdl if (epp->ep_hdrvalid < sizeof(Elf32_Ehdr)) 3751.1Sfvdl return ENOEXEC; 3761.1Sfvdl 3771.1Sfvdl if (elf_check_header(eh, Elf32_et_exec)) 3781.1Sfvdl return ENOEXEC; 3791.1Sfvdl 3801.1Sfvdl /* 3811.1Sfvdl * check if vnode is in open for writing, because we want to 3821.1Sfvdl * demand-page out of it. if it is, don't do it, for various 3831.1Sfvdl * reasons 3841.1Sfvdl */ 3851.1Sfvdl if (epp->ep_vp->v_writecount != 0) { 3861.1Sfvdl#ifdef DIAGNOSTIC 3871.1Sfvdl if (epp->ep_vp->v_flag & VTEXT) 3881.1Sfvdl panic("exec: a VTEXT vnode has writecount != 0\n"); 3891.1Sfvdl#endif 3901.1Sfvdl return ETXTBSY; 3911.1Sfvdl } 3921.1Sfvdl /* 3931.1Sfvdl * Allocate space to hold all the program headers, and read them 3941.1Sfvdl * from the file 3951.1Sfvdl */ 3961.1Sfvdl phsize = eh->e_phnum * sizeof(Elf32_Phdr); 3971.1Sfvdl ph = (Elf32_Phdr *) malloc(phsize, M_TEMP, M_WAITOK); 3981.1Sfvdl 3991.1Sfvdl if ((error = elf_read_from(p, epp->ep_vp, eh->e_phoff, 4001.1Sfvdl (caddr_t) ph, phsize)) != 0) 4011.1Sfvdl goto bad; 4021.1Sfvdl 4031.1Sfvdl epp->ep_tsize = ELF32_NO_ADDR; 4041.1Sfvdl epp->ep_dsize = ELF32_NO_ADDR; 4051.1Sfvdl 4061.1Sfvdl interp[0] = '\0'; 4071.1Sfvdl 4081.1Sfvdl for (i = 0; i < eh->e_phnum; i++) { 4091.1Sfvdl pp = &ph[i]; 4101.1Sfvdl if (pp->p_type == Elf32_pt_interp) { 4111.1Sfvdl if (pp->p_filesz >= sizeof(interp)) 4121.1Sfvdl goto bad; 4131.1Sfvdl if ((error = elf_read_from(p, epp->ep_vp, pp->p_offset, 4141.1Sfvdl (caddr_t) interp, pp->p_filesz)) != 0) 4151.1Sfvdl goto bad; 4161.1Sfvdl break; 4171.1Sfvdl } 4181.1Sfvdl } 4191.1Sfvdl 4201.1Sfvdl /* 4211.1Sfvdl * On the same architecture, we may be emulating different systems. 4221.1Sfvdl * See which one will accept this executable. This currently only 4231.1Sfvdl * applies to Linux and SVR4 on the i386. 4241.1Sfvdl * 4251.1Sfvdl * Probe functions would normally see if the interpreter (if any) 4261.1Sfvdl * exists. Emulation packages may possibly replace the interpreter in 4271.1Sfvdl * interp[] with a changed path (/emul/xxx/<path>), and also 4281.1Sfvdl * set the ep_emul field in the exec package structure. 4291.1Sfvdl */ 4301.1Sfvdl if ((n = sizeof elf_probe_funcs / sizeof elf_probe_funcs[0])) { 4311.1Sfvdl error = ENOEXEC; 4321.1Sfvdl for (i = 0; i < n && error; i++) 4331.1Sfvdl error = elf_probe_funcs[i](p, epp, interp, &pos); 4341.1Sfvdl 4351.1Sfvdl if (error) 4361.1Sfvdl goto bad; 4371.1Sfvdl } 4381.1Sfvdl 4391.1Sfvdl /* 4401.1Sfvdl * Load all the necessary sections 4411.1Sfvdl */ 4421.4Sfvdl for (i = nload = 0; i < eh->e_phnum; i++) { 4431.1Sfvdl u_long addr = ELF32_NO_ADDR, size = 0; 4441.1Sfvdl int prot = 0; 4451.1Sfvdl 4461.1Sfvdl pp = &ph[i]; 4471.1Sfvdl 4481.1Sfvdl switch (ph[i].p_type) { 4491.1Sfvdl case Elf32_pt_load: 4501.4Sfvdl /* 4511.4Sfvdl * XXX 4521.4Sfvdl * Can handle only 2 sections: text and data 4531.4Sfvdl */ 4541.4Sfvdl if (nload++ == 2) 4551.4Sfvdl goto bad; 4561.1Sfvdl elf_load_psection(&epp->ep_vmcmds, epp->ep_vp, 4571.1Sfvdl &ph[i], &addr, &size, &prot); 4581.4Sfvdl /* 4591.4Sfvdl * Decide whether it's text or data by looking 4601.4Sfvdl * at the entry point. 4611.4Sfvdl */ 4621.4Sfvdl if (eh->e_entry >= addr && eh->e_entry < (addr + size)){ 4631.4Sfvdl epp->ep_taddr = addr; 4641.4Sfvdl epp->ep_tsize = size; 4651.4Sfvdl } else { 4661.4Sfvdl epp->ep_daddr = addr; 4671.4Sfvdl epp->ep_dsize = size; 4681.4Sfvdl } 4691.1Sfvdl break; 4701.1Sfvdl 4711.1Sfvdl case Elf32_pt_shlib: 4721.1Sfvdl error = ENOEXEC; 4731.1Sfvdl goto bad; 4741.1Sfvdl 4751.1Sfvdl case Elf32_pt_interp: 4761.1Sfvdl /* Already did this one */ 4771.1Sfvdl case Elf32_pt_dynamic: 4781.1Sfvdl case Elf32_pt_note: 4791.1Sfvdl break; 4801.1Sfvdl 4811.4Sfvdl case Elf32_pt_phdr: 4821.4Sfvdl /* Note address of program headers (in text segment) */ 4831.4Sfvdl phdr = pp->p_vaddr; 4841.4Sfvdl break; 4851.4Sfvdl 4861.1Sfvdl default: 4871.1Sfvdl /* 4881.1Sfvdl * Not fatal, we don't need to understand everything 4891.1Sfvdl * :-) 4901.1Sfvdl */ 4911.1Sfvdl break; 4921.1Sfvdl } 4931.1Sfvdl } 4941.1Sfvdl 4951.1Sfvdl /* 4961.1Sfvdl * Check if we found a dynamically linked binary and arrange to load 4971.1Sfvdl * it's interpreter 4981.1Sfvdl */ 4991.1Sfvdl if (interp[0]) { 5001.1Sfvdl struct elf_args *ap; 5011.1Sfvdl 5021.1Sfvdl ap = (struct elf_args *) malloc(sizeof(struct elf_args), 5031.1Sfvdl M_TEMP, M_WAITOK); 5041.1Sfvdl if ((error = elf_load_file(p, interp, &epp->ep_vmcmds, 5051.1Sfvdl &epp->ep_entry, ap, &pos)) != 0) { 5061.1Sfvdl free((char *) ap, M_TEMP); 5071.1Sfvdl goto bad; 5081.1Sfvdl } 5091.1Sfvdl pos += phsize; 5101.4Sfvdl ap->arg_phaddr = phdr; 5111.1Sfvdl 5121.1Sfvdl ap->arg_phentsize = eh->e_phentsize; 5131.1Sfvdl ap->arg_phnum = eh->e_phnum; 5141.1Sfvdl ap->arg_entry = eh->e_entry; 5151.1Sfvdl 5161.1Sfvdl epp->ep_emul_arg = ap; 5171.1Sfvdl } else 5181.1Sfvdl epp->ep_entry = eh->e_entry; 5191.1Sfvdl 5201.1Sfvdl free((char *) ph, M_TEMP); 5211.1Sfvdl epp->ep_vp->v_flag |= VTEXT; 5221.1Sfvdl return exec_aout_setup_stack(p, epp); 5231.1Sfvdl 5241.1Sfvdlbad: 5251.1Sfvdl free((char *) ph, M_TEMP); 5261.1Sfvdl kill_vmcmds(&epp->ep_vmcmds); 5271.1Sfvdl return ENOEXEC; 5281.1Sfvdl} 529