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elf2ecoff.c revision 1.36
      1  1.36   tsutsui /*	$NetBSD: elf2ecoff.c,v 1.36 2025/03/30 14:13:59 tsutsui Exp $	*/
      2   1.2  jonathan 
      3   1.1  jonathan /*
      4   1.8  jonathan  * Copyright (c) 1997 Jonathan Stone
      5   1.8  jonathan  *    All rights reserved.
      6   1.1  jonathan  * Copyright (c) 1995
      7   1.1  jonathan  *	Ted Lemon (hereinafter referred to as the author)
      8   1.1  jonathan  *
      9   1.1  jonathan  * Redistribution and use in source and binary forms, with or without
     10   1.1  jonathan  * modification, are permitted provided that the following conditions
     11   1.1  jonathan  * are met:
     12   1.1  jonathan  * 1. Redistributions of source code must retain the above copyright
     13   1.1  jonathan  *    notice, this list of conditions and the following disclaimer.
     14   1.1  jonathan  * 2. Redistributions in binary form must reproduce the above copyright
     15   1.1  jonathan  *    notice, this list of conditions and the following disclaimer in the
     16   1.1  jonathan  *    documentation and/or other materials provided with the distribution.
     17   1.1  jonathan  * 3. The name of the author may not be used to endorse or promote products
     18   1.1  jonathan  *    derived from this software without specific prior written permission.
     19   1.1  jonathan  *
     20   1.1  jonathan  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND
     21   1.1  jonathan  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     22   1.1  jonathan  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     23   1.1  jonathan  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR BE LIABLE
     24   1.1  jonathan  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     25   1.1  jonathan  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     26   1.1  jonathan  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     27   1.1  jonathan  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     28   1.1  jonathan  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     29   1.1  jonathan  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     30   1.1  jonathan  * SUCH DAMAGE.
     31   1.1  jonathan  */
     32   1.1  jonathan 
     33   1.1  jonathan /* elf2ecoff.c
     34   1.1  jonathan 
     35   1.1  jonathan    This program converts an elf executable to an ECOFF executable.
     36   1.1  jonathan    No symbol table is retained.   This is useful primarily in building
     37   1.1  jonathan    net-bootable kernels for machines (e.g., DECstation and Alpha) which
     38   1.1  jonathan    only support the ECOFF object file format. */
     39   1.1  jonathan 
     40  1.21     lukem #if HAVE_NBTOOL_CONFIG_H
     41  1.21     lukem #include "nbtool_config.h"
     42  1.20        tv #endif
     43  1.20        tv 
     44   1.1  jonathan #include <sys/types.h>
     45  1.11    simonb #include <err.h>
     46  1.12    kleink #include <errno.h>
     47   1.1  jonathan #include <fcntl.h>
     48   1.1  jonathan #include <unistd.h>
     49   1.3  jonathan #include <sys/exec_elf.h>
     50   1.1  jonathan #include <stdio.h>
     51   1.1  jonathan #include <sys/exec_ecoff.h>
     52   1.6  jonathan #include <stdlib.h>
     53   1.1  jonathan #include <string.h>
     54   1.1  jonathan #include <limits.h>
     55   1.3  jonathan 
     56   1.6  jonathan #define	ISLAST(p)	(p->n_un.n_name == 0 || p->n_un.n_name[0] == 0)
     57   1.6  jonathan 
     58   1.1  jonathan struct sect {
     59  1.31  christos 	uint32_t vaddr;
     60  1.31  christos 	uint32_t len;
     61   1.1  jonathan };
     62   1.1  jonathan 
     63   1.8  jonathan struct elf_syms {
     64   1.9     lukem 	int     nsymbols;
     65   1.8  jonathan 	Elf32_Sym *elf_syms;
     66   1.9     lukem 	off_t   stringsize;
     67   1.9     lukem 	char   *stringtab;
     68   1.8  jonathan };
     69   1.8  jonathan 
     70   1.8  jonathan struct ecoff_syms {
     71   1.9     lukem 	int     nsymbols;
     72   1.8  jonathan 	struct ecoff_extsym *ecoff_syms;
     73   1.9     lukem 	off_t   stringsize;
     74   1.9     lukem 	char   *stringtab;
     75   1.8  jonathan };
     76   1.8  jonathan 
     77  1.36   tsutsui int debug = 0;
     78  1.36   tsutsui 
     79  1.28  christos static int     needswap;
     80   1.6  jonathan 
     81  1.28  christos static int     phcmp(Elf32_Phdr *, Elf32_Phdr *);
     82  1.28  christos static char   *saveRead(int, off_t, off_t, const char *);
     83  1.28  christos static void    safewrite(int, const void *, off_t, const char *);
     84  1.28  christos static void    copy(int, int, off_t, off_t);
     85  1.28  christos static void    combine(struct sect *, struct sect *, int);
     86  1.28  christos static void    translate_syms(struct elf_syms *, struct ecoff_syms *);
     87  1.31  christos static void    elf_symbol_table_to_ecoff(int, int, struct ecoff32_exechdr *,
     88  1.28  christos     off_t, off_t, off_t, off_t);
     89  1.31  christos static int     make_ecoff_section_hdrs(struct ecoff32_exechdr *,
     90  1.31  christos     struct ecoff32_scnhdr *);
     91  1.31  christos static void    write_ecoff_symhdr(int, struct ecoff32_exechdr *,
     92  1.31  christos     struct ecoff32_symhdr *, int32_t, int32_t, int32_t, int32_t);
     93  1.28  christos static void    pad16(int, int, const char *);
     94  1.28  christos static void    bswap32_region(int32_t* , int);
     95  1.28  christos static void    elf_read_syms(struct elf_syms *, int, off_t, off_t, off_t,
     96  1.28  christos     off_t);
     97   1.8  jonathan 
     98   1.8  jonathan 
     99   1.6  jonathan int
    100  1.28  christos main(int argc, char **argv)
    101   1.1  jonathan {
    102   1.9     lukem 	Elf32_Ehdr ex;
    103   1.9     lukem 	Elf32_Phdr *ph;
    104   1.9     lukem 	Elf32_Shdr *sh;
    105   1.9     lukem 	char   *shstrtab;
    106   1.9     lukem 	int     strtabix, symtabix;
    107  1.23   tsutsui 	size_t	i;
    108  1.23   tsutsui 	int     pad;
    109   1.9     lukem 	struct sect text, data, bss;	/* a.out-compatible sections */
    110   1.9     lukem 
    111  1.31  christos 	struct ecoff32_exechdr ep;
    112  1.31  christos 	struct ecoff32_scnhdr esecs[6];
    113  1.31  christos 	struct ecoff32_symhdr symhdr;
    114   1.9     lukem 
    115   1.9     lukem 	int     infile, outfile;
    116  1.31  christos 	uint32_t cur_vma = UINT32_MAX;
    117   1.9     lukem 	int     nsecs = 0;
    118  1.16    bouyer 	int	mipsel;
    119  1.16    bouyer 
    120   1.9     lukem 
    121   1.9     lukem 	text.len = data.len = bss.len = 0;
    122   1.9     lukem 	text.vaddr = data.vaddr = bss.vaddr = 0;
    123   1.9     lukem 
    124   1.9     lukem 	/* Check args... */
    125   1.9     lukem 	if (argc < 3 || argc > 4) {
    126   1.9     lukem usage:
    127   1.9     lukem 		fprintf(stderr,
    128  1.28  christos 		    "Usage: %s <elf executable> <ECOFF executable> [-s]\n",
    129  1.28  christos 		    getprogname());
    130   1.9     lukem 		exit(1);
    131   1.9     lukem 	}
    132   1.9     lukem 	if (argc == 4) {
    133   1.9     lukem 		if (strcmp(argv[3], "-s"))
    134   1.9     lukem 			goto usage;
    135   1.1  jonathan 	}
    136   1.9     lukem 	/* Try the input file... */
    137  1.28  christos 	if ((infile = open(argv[1], O_RDONLY)) < 0)
    138  1.28  christos 		err(1, "Can't open %s for read", argv[1]);
    139   1.9     lukem 	/* Read the header, which is at the beginning of the file... */
    140   1.9     lukem 	i = read(infile, &ex, sizeof ex);
    141  1.28  christos 	if (i != sizeof ex)
    142  1.28  christos 		err(1, "Short header read from %s", argv[1]);
    143  1.16    bouyer 	if (ex.e_ident[EI_DATA] == ELFDATA2LSB)
    144  1.16    bouyer 		mipsel = 1;
    145  1.16    bouyer 	else if (ex.e_ident[EI_DATA] == ELFDATA2MSB)
    146  1.16    bouyer 		mipsel = 0;
    147  1.28  christos 	else
    148  1.28  christos 		errx(1, "invalid ELF byte order %d", ex.e_ident[EI_DATA]);
    149  1.16    bouyer #if BYTE_ORDER == BIG_ENDIAN
    150  1.16    bouyer 	if (mipsel)
    151  1.16    bouyer 		needswap = 1;
    152  1.16    bouyer 	else
    153  1.16    bouyer 		needswap = 0;
    154  1.16    bouyer #elif BYTE_ORDER == LITTLE_ENDIAN
    155  1.16    bouyer 	if (mipsel)
    156  1.16    bouyer 		needswap = 0;
    157  1.16    bouyer 	else
    158  1.16    bouyer 		needswap = 1;
    159  1.16    bouyer #else
    160  1.16    bouyer #error "unknown endian"
    161  1.16    bouyer #endif
    162  1.16    bouyer 
    163  1.16    bouyer 	if (needswap) {
    164  1.16    bouyer 		ex.e_type	= bswap16(ex.e_type);
    165  1.16    bouyer 		ex.e_machine	= bswap16(ex.e_machine);
    166  1.16    bouyer 		ex.e_version	= bswap32(ex.e_version);
    167  1.16    bouyer 		ex.e_entry 	= bswap32(ex.e_entry);
    168  1.16    bouyer 		ex.e_phoff	= bswap32(ex.e_phoff);
    169  1.16    bouyer 		ex.e_shoff	= bswap32(ex.e_shoff);
    170  1.16    bouyer 		ex.e_flags	= bswap32(ex.e_flags);
    171  1.16    bouyer 		ex.e_ehsize	= bswap16(ex.e_ehsize);
    172  1.16    bouyer 		ex.e_phentsize	= bswap16(ex.e_phentsize);
    173  1.16    bouyer 		ex.e_phnum	= bswap16(ex.e_phnum);
    174  1.16    bouyer 		ex.e_shentsize	= bswap16(ex.e_shentsize);
    175  1.16    bouyer 		ex.e_shnum	= bswap16(ex.e_shnum);
    176  1.16    bouyer 		ex.e_shstrndx	= bswap16(ex.e_shstrndx);
    177  1.16    bouyer 	}
    178  1.16    bouyer 
    179   1.9     lukem 	/* Read the program headers... */
    180   1.9     lukem 	ph = (Elf32_Phdr *) saveRead(infile, ex.e_phoff,
    181   1.9     lukem 	    ex.e_phnum * sizeof(Elf32_Phdr), "ph");
    182  1.16    bouyer 	if (needswap)
    183  1.22    simonb 		bswap32_region((int32_t*)ph, sizeof(Elf32_Phdr) * ex.e_phnum);
    184   1.9     lukem 	/* Read the section headers... */
    185   1.9     lukem 	sh = (Elf32_Shdr *) saveRead(infile, ex.e_shoff,
    186   1.9     lukem 	    ex.e_shnum * sizeof(Elf32_Shdr), "sh");
    187  1.16    bouyer 	if (needswap)
    188  1.22    simonb 		bswap32_region((int32_t*)sh, sizeof(Elf32_Shdr) * ex.e_shnum);
    189  1.16    bouyer 
    190   1.9     lukem 	/* Read in the section string table. */
    191   1.9     lukem 	shstrtab = saveRead(infile, sh[ex.e_shstrndx].sh_offset,
    192   1.9     lukem 	    sh[ex.e_shstrndx].sh_size, "shstrtab");
    193   1.9     lukem 
    194   1.9     lukem 
    195   1.9     lukem 	/* Look for the symbol table and string table... Also map section
    196   1.9     lukem 	 * indices to symbol types for a.out */
    197   1.9     lukem 	symtabix = 0;
    198   1.9     lukem 	strtabix = 0;
    199   1.9     lukem 	for (i = 0; i < ex.e_shnum; i++) {
    200   1.9     lukem 		char   *name = shstrtab + sh[i].sh_name;
    201   1.9     lukem 		if (!strcmp(name, ".symtab"))
    202   1.9     lukem 			symtabix = i;
    203   1.9     lukem 		else
    204   1.9     lukem 			if (!strcmp(name, ".strtab"))
    205   1.9     lukem 				strtabix = i;
    206   1.1  jonathan 
    207   1.9     lukem 	}
    208   1.6  jonathan 
    209  1.28  christos 	/*
    210  1.28  christos 	 * Figure out if we can cram the program header into an ECOFF
    211   1.9     lukem 	 * header...  Basically, we can't handle anything but loadable
    212   1.9     lukem 	 * segments, but we can ignore some kinds of segments.  We can't
    213   1.9     lukem 	 * handle holes in the address space.  Segments may be out of order,
    214  1.28  christos 	 * so we sort them first.
    215  1.28  christos 	 */
    216   1.9     lukem 
    217   1.9     lukem 	qsort(ph, ex.e_phnum, sizeof(Elf32_Phdr),
    218   1.9     lukem 	    (int (*) (const void *, const void *)) phcmp);
    219   1.9     lukem 
    220   1.9     lukem 	for (i = 0; i < ex.e_phnum; i++) {
    221  1.30  christos 		switch (ph[i].p_type) {
    222  1.30  christos 		case PT_NOTE:
    223  1.30  christos 		case PT_NULL:
    224  1.30  christos 		case PT_PHDR:
    225  1.30  christos 		case PT_MIPS_ABIFLAGS:
    226  1.30  christos 		case PT_MIPS_REGINFO:
    227  1.30  christos 			/* Section types we can ignore... */
    228   1.9     lukem 			if (debug) {
    229  1.30  christos 				fprintf(stderr, "  skipping PH %zu type %#x "
    230  1.30  christos 				    "flags %#x\n",
    231   1.9     lukem 				    i, ph[i].p_type, ph[i].p_flags);
    232   1.9     lukem 			}
    233   1.9     lukem 			continue;
    234  1.30  christos 		default:
    235  1.30  christos 			/* Section types we can't handle... */
    236  1.28  christos 			if (ph[i].p_type != PT_LOAD)
    237  1.30  christos 				errx(1, "Program header %zu type %#x can't be "
    238  1.28  christos 				    "converted", i, ph[i].p_type);
    239  1.30  christos 		}
    240   1.9     lukem 		/* Writable (data) segment? */
    241   1.9     lukem 		if (ph[i].p_flags & PF_W) {
    242   1.9     lukem 			struct sect ndata, nbss;
    243   1.9     lukem 
    244   1.9     lukem 			ndata.vaddr = ph[i].p_vaddr;
    245   1.9     lukem 			ndata.len = ph[i].p_filesz;
    246   1.9     lukem 			nbss.vaddr = ph[i].p_vaddr + ph[i].p_filesz;
    247   1.9     lukem 			nbss.len = ph[i].p_memsz - ph[i].p_filesz;
    248   1.9     lukem 
    249   1.9     lukem 			if (debug) {
    250  1.34    andvar 				fprintf(stderr, "  combining PH %zu type %d "
    251  1.33  christos 				    "flags %#x with data, ndata = %d, "
    252  1.31  christos 				    "nbss =%d\n", i, ph[i].p_type,
    253  1.28  christos 				    ph[i].p_flags, ndata.len, nbss.len);
    254   1.9     lukem 			}
    255   1.9     lukem 			combine(&data, &ndata, 0);
    256   1.9     lukem 			combine(&bss, &nbss, 1);
    257   1.9     lukem 		} else {
    258   1.9     lukem 			struct sect ntxt;
    259   1.9     lukem 
    260   1.9     lukem 			ntxt.vaddr = ph[i].p_vaddr;
    261   1.9     lukem 			ntxt.len = ph[i].p_filesz;
    262   1.9     lukem 			if (debug) {
    263  1.34    andvar 				fprintf(stderr, "  combining PH %zu type %d "
    264  1.33  christos 				    "flags %#x with text, len = %d\n",
    265   1.9     lukem 				    i, ph[i].p_type, ph[i].p_flags, ntxt.len);
    266   1.9     lukem 			}
    267   1.9     lukem 			combine(&text, &ntxt, 0);
    268   1.9     lukem 		}
    269   1.9     lukem 		/* Remember the lowest segment start address. */
    270   1.9     lukem 		if (ph[i].p_vaddr < cur_vma)
    271   1.9     lukem 			cur_vma = ph[i].p_vaddr;
    272   1.1  jonathan 	}
    273   1.1  jonathan 
    274   1.9     lukem 	/* Sections must be in order to be converted... */
    275   1.9     lukem 	if (text.vaddr > data.vaddr || data.vaddr > bss.vaddr ||
    276  1.28  christos 	    text.vaddr + text.len > data.vaddr ||
    277  1.28  christos 	    data.vaddr + data.len > bss.vaddr)
    278  1.28  christos 		errx(1, "Sections ordering prevents a.out conversion");
    279   1.9     lukem 	/* If there's a data section but no text section, then the loader
    280   1.9     lukem 	 * combined everything into one section.   That needs to be the text
    281   1.9     lukem 	 * section, so just make the data section zero length following text. */
    282  1.27   tsutsui 	if (data.len && text.len == 0) {
    283   1.9     lukem 		text = data;
    284   1.9     lukem 		data.vaddr = text.vaddr + text.len;
    285   1.9     lukem 		data.len = 0;
    286   1.9     lukem 	}
    287   1.9     lukem 	/* If there is a gap between text and data, we'll fill it when we copy
    288   1.9     lukem 	 * the data, so update the length of the text segment as represented
    289   1.9     lukem 	 * in a.out to reflect that, since a.out doesn't allow gaps in the
    290   1.9     lukem 	 * program address space. */
    291   1.9     lukem 	if (text.vaddr + text.len < data.vaddr)
    292   1.9     lukem 		text.len = data.vaddr - text.vaddr;
    293   1.9     lukem 
    294   1.9     lukem 	/* We now have enough information to cons up an a.out header... */
    295   1.9     lukem 	ep.a.magic = ECOFF_OMAGIC;
    296   1.9     lukem 	ep.a.vstamp = 2 * 256 + 10;	/* compatible with version 2.10 */
    297   1.9     lukem 	ep.a.tsize = text.len;
    298   1.9     lukem 	ep.a.dsize = data.len;
    299   1.9     lukem 	ep.a.bsize = bss.len;
    300   1.9     lukem 	ep.a.entry = ex.e_entry;
    301   1.9     lukem 	ep.a.text_start = text.vaddr;
    302   1.9     lukem 	ep.a.data_start = data.vaddr;
    303   1.9     lukem 	ep.a.bss_start = bss.vaddr;
    304   1.9     lukem 	ep.a.gprmask = 0xf3fffffe;
    305  1.10     perry 	memset(&ep.a.cprmask, 0, sizeof ep.a.cprmask);
    306   1.9     lukem 	ep.a.gp_value = 0;	/* unused. */
    307   1.9     lukem 
    308  1.16    bouyer 	if (mipsel)
    309  1.15    bouyer 		ep.f.f_magic = ECOFF_MAGIC_MIPSEL;
    310  1.16    bouyer 	else
    311  1.15    bouyer 		ep.f.f_magic = ECOFF_MAGIC_MIPSEB;
    312  1.15    bouyer 
    313   1.9     lukem 	ep.f.f_nscns = 6;
    314   1.9     lukem 	ep.f.f_timdat = 0;	/* bogus */
    315   1.9     lukem 	ep.f.f_symptr = 0;
    316  1.31  christos 	ep.f.f_nsyms = sizeof(struct ecoff32_symhdr);
    317   1.9     lukem 	ep.f.f_opthdr = sizeof ep.a;
    318  1.35    andvar 	ep.f.f_flags = 0x100f;	/* Stripped, not shareable. */
    319   1.9     lukem 
    320  1.10     perry 	memset(esecs, 0, sizeof(esecs));
    321   1.9     lukem 
    322   1.9     lukem 	/* Make  ECOFF section headers, with empty stubs for
    323   1.9     lukem 	 * .rdata/.sdata/.sbss. */
    324   1.9     lukem 	make_ecoff_section_hdrs(&ep, esecs);
    325   1.9     lukem 
    326   1.9     lukem 	nsecs = ep.f.f_nscns;
    327   1.9     lukem 
    328  1.16    bouyer 	if (needswap) {
    329  1.16    bouyer 		ep.f.f_magic	= bswap16(ep.f.f_magic);
    330  1.16    bouyer 		ep.f.f_nscns	= bswap16(ep.f.f_nscns);
    331  1.16    bouyer 		ep.f.f_timdat	= bswap32(ep.f.f_timdat);
    332  1.16    bouyer 		ep.f.f_symptr	= bswap32(ep.f.f_symptr);
    333  1.16    bouyer 		ep.f.f_nsyms	= bswap32(ep.f.f_nsyms);
    334  1.16    bouyer 		ep.f.f_opthdr	= bswap16(ep.f.f_opthdr);
    335  1.16    bouyer 		ep.f.f_flags	= bswap16(ep.f.f_flags);
    336  1.16    bouyer 		ep.a.magic	= bswap16(ep.a.magic);
    337  1.16    bouyer 		ep.a.vstamp	= bswap16(ep.a.vstamp);
    338  1.16    bouyer 		ep.a.tsize	= bswap32(ep.a.tsize);
    339  1.16    bouyer 		ep.a.dsize	= bswap32(ep.a.dsize);
    340  1.16    bouyer 		ep.a.bsize	= bswap32(ep.a.bsize);
    341  1.16    bouyer 		ep.a.entry	= bswap32(ep.a.entry);
    342  1.16    bouyer 		ep.a.text_start	= bswap32(ep.a.text_start);
    343  1.16    bouyer 		ep.a.data_start	= bswap32(ep.a.data_start);
    344  1.16    bouyer 		ep.a.bss_start	= bswap32(ep.a.bss_start);
    345  1.16    bouyer 		ep.a.gprmask	= bswap32(ep.a.gprmask);
    346  1.22    simonb 		bswap32_region((int32_t*)ep.a.cprmask, sizeof(ep.a.cprmask));
    347  1.16    bouyer 		ep.a.gp_value	= bswap32(ep.a.gp_value);
    348  1.16    bouyer 		for (i = 0; i < sizeof(esecs) / sizeof(esecs[0]); i++) {
    349  1.16    bouyer 			esecs[i].s_paddr	= bswap32(esecs[i].s_paddr);
    350  1.16    bouyer 			esecs[i].s_vaddr	= bswap32(esecs[i].s_vaddr);
    351  1.16    bouyer 			esecs[i].s_size 	= bswap32(esecs[i].s_size);
    352  1.16    bouyer 			esecs[i].s_scnptr	= bswap32(esecs[i].s_scnptr);
    353  1.16    bouyer 			esecs[i].s_relptr	= bswap32(esecs[i].s_relptr);
    354  1.16    bouyer 			esecs[i].s_lnnoptr	= bswap32(esecs[i].s_lnnoptr);
    355  1.16    bouyer 			esecs[i].s_nreloc	= bswap16(esecs[i].s_nreloc);
    356  1.16    bouyer 			esecs[i].s_nlnno	= bswap16(esecs[i].s_nlnno);
    357  1.16    bouyer 			esecs[i].s_flags	= bswap32(esecs[i].s_flags);
    358  1.16    bouyer 		}
    359  1.16    bouyer 	}
    360  1.16    bouyer 
    361   1.9     lukem 	/* Make the output file... */
    362  1.28  christos 	if ((outfile = open(argv[2], O_WRONLY | O_CREAT, 0777)) < 0)
    363  1.28  christos 		err(1, "Unable to create %s", argv[2]);
    364  1.28  christos 
    365  1.11    simonb 	/* Truncate file... */
    366  1.11    simonb 	if (ftruncate(outfile, 0)) {
    367  1.11    simonb 		warn("ftruncate %s", argv[2]);
    368  1.11    simonb 	}
    369   1.9     lukem 	/* Write the headers... */
    370  1.28  christos 	safewrite(outfile, &ep.f, sizeof(ep.f), "ep.f: write");
    371  1.11    simonb 	if (debug)
    372  1.24      matt 		fprintf(stderr, "wrote %zu byte file header.\n", sizeof(ep.f));
    373   1.9     lukem 
    374  1.28  christos 	safewrite(outfile, &ep.a, sizeof(ep.a), "ep.a: write");
    375  1.11    simonb 	if (debug)
    376  1.24      matt 		fprintf(stderr, "wrote %zu byte a.out header.\n", sizeof(ep.a));
    377   1.9     lukem 
    378  1.28  christos 	safewrite(outfile, &esecs, sizeof(esecs[0]) * nsecs, "esecs: write");
    379  1.11    simonb 	if (debug)
    380  1.24      matt 		fprintf(stderr, "wrote %zu bytes of section headers.\n",
    381  1.11    simonb 		    sizeof(esecs[0]) * nsecs);
    382   1.9     lukem 
    383   1.9     lukem 
    384   1.9     lukem 	pad = ((sizeof ep.f + sizeof ep.a + sizeof esecs) & 15);
    385   1.9     lukem 	if (pad) {
    386   1.9     lukem 		pad = 16 - pad;
    387  1.28  christos 		pad16(outfile, pad, "ipad: write");
    388  1.11    simonb 		if (debug)
    389  1.11    simonb 			fprintf(stderr, "wrote %d byte pad.\n", pad);
    390   1.9     lukem 	}
    391   1.9     lukem 	/* Copy the loadable sections.   Zero-fill any gaps less than 64k;
    392   1.9     lukem 	 * complain about any zero-filling, and die if we're asked to
    393   1.9     lukem 	 * zero-fill more than 64k. */
    394   1.9     lukem 	for (i = 0; i < ex.e_phnum; i++) {
    395   1.9     lukem 		/* Unprocessable sections were handled above, so just verify
    396   1.9     lukem 		 * that the section can be loaded before copying. */
    397  1.13  drochner 		if (ph[i].p_type == PT_LOAD && ph[i].p_filesz) {
    398   1.9     lukem 			if (cur_vma != ph[i].p_vaddr) {
    399  1.31  christos 				uint32_t gap = ph[i].p_vaddr - cur_vma;
    400   1.9     lukem 				char    obuf[1024];
    401  1.28  christos 				if (gap > 65536)
    402  1.31  christos 					errx(1, "Intersegment gap (%d bytes) "
    403  1.28  christos 					    "too large", gap);
    404  1.11    simonb 				if (debug)
    405  1.31  christos 					fprintf(stderr, "Warning: %d byte "
    406  1.28  christos 					    "intersegment gap.\n", gap);
    407   1.9     lukem 				memset(obuf, 0, sizeof obuf);
    408   1.9     lukem 				while (gap) {
    409  1.28  christos 					int count = write(outfile, obuf,
    410  1.28  christos 					    (gap > sizeof obuf
    411  1.28  christos 					    ? sizeof obuf : gap));
    412  1.28  christos 					if (count < 0)
    413  1.28  christos 						err(1, "Error writing gap");
    414   1.9     lukem 					gap -= count;
    415   1.9     lukem 				}
    416   1.9     lukem 			}
    417  1.11    simonb 			if (debug)
    418  1.28  christos 				fprintf(stderr, "writing %d bytes...\n",
    419  1.28  christos 				    ph[i].p_filesz);
    420   1.9     lukem 			copy(outfile, infile, ph[i].p_offset, ph[i].p_filesz);
    421   1.9     lukem 			cur_vma = ph[i].p_vaddr + ph[i].p_filesz;
    422   1.9     lukem 		}
    423   1.9     lukem 	}
    424   1.9     lukem 
    425   1.9     lukem 
    426   1.9     lukem 	if (debug)
    427  1.33  christos 		fprintf(stderr, "writing syms at offset %#x\n",
    428  1.33  christos 		    (uint32_t)(ep.f.f_symptr + sizeof(symhdr)));
    429   1.9     lukem 
    430   1.9     lukem 	/* Copy and translate the symbol table... */
    431   1.9     lukem 	elf_symbol_table_to_ecoff(outfile, infile, &ep,
    432   1.9     lukem 	    sh[symtabix].sh_offset, sh[symtabix].sh_size,
    433   1.9     lukem 	    sh[strtabix].sh_offset, sh[strtabix].sh_size);
    434   1.9     lukem 
    435   1.9     lukem 	/*
    436   1.9     lukem          * Write a page of padding for boot PROMS that read entire pages.
    437   1.9     lukem          * Without this, they may attempt to read past the end of the
    438   1.9     lukem          * data section, incur an error, and refuse to boot.
    439   1.9     lukem          */
    440   1.1  jonathan 	{
    441   1.9     lukem 		char    obuf[4096];
    442   1.9     lukem 		memset(obuf, 0, sizeof obuf);
    443  1.28  christos 		if (write(outfile, obuf, sizeof(obuf)) != sizeof(obuf))
    444  1.28  christos 			err(1, "Error writing PROM padding");
    445   1.9     lukem 	}
    446   1.6  jonathan 
    447   1.9     lukem 	/* Looks like we won... */
    448  1.28  christos 	return 0;
    449   1.1  jonathan }
    450   1.1  jonathan 
    451  1.28  christos static void
    452  1.27   tsutsui copy(int out, int in, off_t offset, off_t size)
    453   1.9     lukem {
    454   1.9     lukem 	char    ibuf[4096];
    455  1.23   tsutsui 	size_t  remaining, cur, count;
    456   1.9     lukem 
    457  1.14     soren 	/* Go to the start of the ELF symbol table... */
    458  1.28  christos 	if (lseek(in, offset, SEEK_SET) < 0)
    459  1.28  christos 		err(1, "copy: lseek");
    460   1.9     lukem 	remaining = size;
    461   1.9     lukem 	while (remaining) {
    462   1.9     lukem 		cur = remaining;
    463   1.9     lukem 		if (cur > sizeof ibuf)
    464   1.9     lukem 			cur = sizeof ibuf;
    465   1.9     lukem 		remaining -= cur;
    466  1.28  christos 		if ((count = read(in, ibuf, cur)) != cur)
    467  1.28  christos 			err(1, "copy: short read");
    468  1.28  christos 		safewrite(out, ibuf, cur, "copy: write");
    469   1.1  jonathan 	}
    470   1.1  jonathan }
    471  1.28  christos 
    472   1.1  jonathan /* Combine two segments, which must be contiguous.   If pad is true, it's
    473   1.1  jonathan    okay for there to be padding between. */
    474  1.28  christos static void
    475  1.27   tsutsui combine(struct sect *base, struct sect *new, int pad)
    476   1.9     lukem {
    477  1.27   tsutsui 
    478  1.27   tsutsui 	if (base->len == 0)
    479   1.9     lukem 		*base = *new;
    480   1.9     lukem 	else
    481   1.9     lukem 		if (new->len) {
    482   1.9     lukem 			if (base->vaddr + base->len != new->vaddr) {
    483   1.9     lukem 				if (pad)
    484   1.9     lukem 					base->len = new->vaddr - base->vaddr;
    485  1.28  christos 				else
    486  1.28  christos 					errx(1, "Non-contiguous data can't be "
    487  1.28  christos 					    "converted");
    488   1.9     lukem 			}
    489   1.9     lukem 			base->len += new->len;
    490   1.9     lukem 		}
    491   1.1  jonathan }
    492   1.1  jonathan 
    493  1.28  christos static int
    494  1.27   tsutsui phcmp(Elf32_Phdr *h1, Elf32_Phdr *h2)
    495   1.1  jonathan {
    496  1.27   tsutsui 
    497   1.9     lukem 	if (h1->p_vaddr > h2->p_vaddr)
    498   1.9     lukem 		return 1;
    499   1.9     lukem 	else
    500   1.9     lukem 		if (h1->p_vaddr < h2->p_vaddr)
    501   1.9     lukem 			return -1;
    502   1.9     lukem 		else
    503   1.9     lukem 			return 0;
    504   1.1  jonathan }
    505   1.1  jonathan 
    506  1.28  christos static char *
    507  1.23   tsutsui saveRead(int file, off_t offset, off_t len, const char *name)
    508   1.1  jonathan {
    509   1.9     lukem 	char   *tmp;
    510   1.9     lukem 	int     count;
    511   1.9     lukem 	off_t   off;
    512  1.27   tsutsui 
    513  1.28  christos 	if ((off = lseek(file, offset, SEEK_SET)) < 0)
    514  1.28  christos 		err(1, "%s: fseek", name);
    515  1.28  christos 	if ((tmp = malloc(len)) == NULL)
    516  1.32  christos 		err(1, "%s: Can't allocate %jd bytes", name, (intmax_t)len);
    517   1.9     lukem 	count = read(file, tmp, len);
    518  1.28  christos 	if (count != len)
    519  1.28  christos 		err(1, "%s: short read", name);
    520   1.9     lukem 	return tmp;
    521   1.6  jonathan }
    522   1.6  jonathan 
    523  1.28  christos static void
    524  1.23   tsutsui safewrite(int outfile, const void *buf, off_t len, const char *msg)
    525   1.8  jonathan {
    526  1.28  christos 	ssize_t     written;
    527  1.27   tsutsui 
    528  1.23   tsutsui 	written = write(outfile, buf, len);
    529  1.28  christos 	if (written != len)
    530  1.28  christos 		err(1, "%s", msg);
    531   1.8  jonathan }
    532   1.8  jonathan 
    533   1.6  jonathan 
    534   1.8  jonathan /*
    535   1.8  jonathan  * Output only three ECOFF sections, corresponding to ELF psecs
    536   1.8  jonathan  * for text, data, and bss.
    537   1.6  jonathan  */
    538  1.28  christos static int
    539  1.31  christos make_ecoff_section_hdrs(struct ecoff32_exechdr *ep, struct ecoff32_scnhdr *esecs)
    540  1.27   tsutsui {
    541   1.6  jonathan 
    542   1.8  jonathan 	ep->f.f_nscns = 6;	/* XXX */
    543   1.6  jonathan 
    544   1.9     lukem 	strcpy(esecs[0].s_name, ".text");
    545   1.9     lukem 	strcpy(esecs[1].s_name, ".data");
    546   1.9     lukem 	strcpy(esecs[2].s_name, ".bss");
    547   1.9     lukem 
    548   1.9     lukem 	esecs[0].s_paddr = esecs[0].s_vaddr = ep->a.text_start;
    549   1.9     lukem 	esecs[1].s_paddr = esecs[1].s_vaddr = ep->a.data_start;
    550   1.9     lukem 	esecs[2].s_paddr = esecs[2].s_vaddr = ep->a.bss_start;
    551   1.9     lukem 	esecs[0].s_size = ep->a.tsize;
    552   1.9     lukem 	esecs[1].s_size = ep->a.dsize;
    553   1.9     lukem 	esecs[2].s_size = ep->a.bsize;
    554   1.6  jonathan 
    555  1.31  christos 	esecs[0].s_scnptr = ECOFF32_TXTOFF(ep);
    556  1.31  christos 	esecs[1].s_scnptr = ECOFF32_DATOFF(ep);
    557   1.6  jonathan #if 0
    558   1.9     lukem 	esecs[2].s_scnptr = esecs[1].s_scnptr +
    559  1.31  christos 	    ECOFF_ROUND(esecs[1].s_size, ECOFF32_SEGMENT_ALIGNMENT(ep));
    560   1.6  jonathan #endif
    561   1.6  jonathan 
    562   1.9     lukem 	esecs[0].s_relptr = esecs[1].s_relptr = esecs[2].s_relptr = 0;
    563   1.9     lukem 	esecs[0].s_lnnoptr = esecs[1].s_lnnoptr = esecs[2].s_lnnoptr = 0;
    564   1.9     lukem 	esecs[0].s_nreloc = esecs[1].s_nreloc = esecs[2].s_nreloc = 0;
    565   1.9     lukem 	esecs[0].s_nlnno = esecs[1].s_nlnno = esecs[2].s_nlnno = 0;
    566   1.8  jonathan 
    567   1.8  jonathan 	esecs[1].s_flags = 0x100;	/* ECOFF rdata */
    568   1.8  jonathan 	esecs[3].s_flags = 0x200;	/* ECOFF sdata */
    569   1.8  jonathan 	esecs[4].s_flags = 0x400;	/* ECOFF sbss */
    570   1.8  jonathan 
    571   1.8  jonathan 	/*
    572   1.8  jonathan 	 * Set the symbol-table offset  to point at the end of any
    573   1.8  jonathan 	 * sections we loaded above, so later code can use it to write
    574   1.8  jonathan 	 * symbol table info..
    575   1.8  jonathan 	 */
    576   1.8  jonathan 	ep->f.f_symptr = esecs[1].s_scnptr + esecs[1].s_size;
    577   1.9     lukem 	return (ep->f.f_nscns);
    578   1.8  jonathan }
    579   1.8  jonathan 
    580   1.8  jonathan 
    581   1.8  jonathan /*
    582   1.8  jonathan  * Write the ECOFF symbol header.
    583   1.8  jonathan  * Guess at how big the symbol table will be.
    584   1.8  jonathan  * Mark all symbols as EXTERN (for now).
    585   1.8  jonathan  */
    586  1.28  christos static void
    587  1.31  christos write_ecoff_symhdr(int out, struct ecoff32_exechdr *ep,
    588  1.31  christos     struct ecoff32_symhdr *symhdrp, int32_t nesyms,
    589  1.31  christos     int32_t extsymoff, int32_t extstroff, int32_t strsize)
    590   1.8  jonathan {
    591  1.27   tsutsui 
    592   1.8  jonathan 	if (debug)
    593  1.28  christos 		fprintf(stderr,
    594  1.33  christos 		    "writing symhdr for %d entries at offset %#x\n",
    595  1.31  christos 		    nesyms, ep->f.f_symptr);
    596   1.8  jonathan 
    597  1.31  christos 	ep->f.f_nsyms = sizeof(struct ecoff32_symhdr);
    598   1.8  jonathan 
    599  1.10     perry 	memset(symhdrp, 0, sizeof(*symhdrp));
    600   1.8  jonathan 	symhdrp->esymMax = nesyms;
    601   1.9     lukem 	symhdrp->magic = 0x7009;/* XXX */
    602   1.8  jonathan 	symhdrp->cbExtOffset = extsymoff;
    603   1.8  jonathan 	symhdrp->cbSsExtOffset = extstroff;
    604   1.8  jonathan 
    605   1.8  jonathan 	symhdrp->issExtMax = strsize;
    606   1.8  jonathan 	if (debug)
    607   1.8  jonathan 		fprintf(stderr,
    608  1.31  christos 		    "ECOFF symhdr: symhdr %zx, strsize %x, symsize %zx\n",
    609   1.8  jonathan 		    sizeof(*symhdrp), strsize,
    610  1.31  christos 		    (nesyms * sizeof(struct ecoff32_extsym)));
    611   1.8  jonathan 
    612  1.16    bouyer 	if (needswap) {
    613  1.22    simonb 		bswap32_region(&symhdrp->ilineMax,
    614  1.16    bouyer 		    sizeof(*symhdrp) -  sizeof(symhdrp->magic) -
    615  1.16    bouyer 		    sizeof(symhdrp->ilineMax));
    616  1.16    bouyer 		symhdrp->magic = bswap16(symhdrp->magic);
    617  1.16    bouyer 		symhdrp->ilineMax = bswap16(symhdrp->ilineMax);
    618  1.16    bouyer 	}
    619  1.27   tsutsui 
    620   1.8  jonathan 	safewrite(out, symhdrp, sizeof(*symhdrp),
    621  1.28  christos 	    "writing symbol header");
    622   1.8  jonathan }
    623   1.8  jonathan 
    624   1.8  jonathan 
    625  1.28  christos static void
    626  1.27   tsutsui elf_read_syms(struct elf_syms *elfsymsp, int in, off_t symoff, off_t symsize,
    627  1.27   tsutsui     off_t stroff, off_t strsize)
    628   1.8  jonathan {
    629  1.31  christos 	int nsyms;
    630  1.16    bouyer 	int i;
    631   1.9     lukem 	nsyms = symsize / sizeof(Elf32_Sym);
    632   1.8  jonathan 
    633   1.8  jonathan 	/* Suck in the ELF symbol list... */
    634   1.8  jonathan 	elfsymsp->elf_syms = (Elf32_Sym *)
    635   1.9     lukem 	    saveRead(in, symoff, nsyms * sizeof(Elf32_Sym),
    636   1.9     lukem 	    "ELF symboltable");
    637   1.8  jonathan 	elfsymsp->nsymbols = nsyms;
    638  1.16    bouyer 	if (needswap) {
    639  1.16    bouyer 		for (i = 0; i < nsyms; i++) {
    640  1.16    bouyer 			Elf32_Sym *s = &elfsymsp->elf_syms[i];
    641  1.16    bouyer 			s->st_name	= bswap32(s->st_name);
    642  1.16    bouyer 			s->st_value	= bswap32(s->st_value);
    643  1.16    bouyer 			s->st_size	= bswap32(s->st_size);
    644  1.16    bouyer 			s->st_shndx	= bswap16(s->st_shndx);
    645  1.16    bouyer 		}
    646  1.16    bouyer 	}
    647   1.8  jonathan 
    648   1.8  jonathan 	/* Suck in the ELF string table... */
    649   1.8  jonathan 	elfsymsp->stringtab = (char *)
    650   1.9     lukem 	    saveRead(in, stroff, strsize, "ELF string table");
    651   1.8  jonathan 	elfsymsp->stringsize = strsize;
    652   1.8  jonathan }
    653   1.8  jonathan 
    654   1.8  jonathan 
    655  1.28  christos static void
    656  1.31  christos elf_symbol_table_to_ecoff(int out, int in, struct ecoff32_exechdr *ep,
    657  1.27   tsutsui     off_t symoff, off_t symsize, off_t stroff, off_t strsize)
    658   1.8  jonathan {
    659   1.8  jonathan 
    660   1.8  jonathan 	struct elf_syms elfsymtab;
    661   1.8  jonathan 	struct ecoff_syms ecoffsymtab;
    662  1.31  christos 	uint32_t ecoff_symhdr_off, symtaboff, stringtaboff;
    663  1.31  christos 	uint32_t nextoff, symtabsize, ecoff_strsize;
    664  1.16    bouyer 	int     nsyms, i;
    665  1.31  christos 	struct ecoff32_symhdr symhdr;
    666   1.9     lukem 	int     padding;
    667   1.9     lukem 
    668   1.8  jonathan 	/* Read in the ELF symbols. */
    669   1.8  jonathan 	elf_read_syms(&elfsymtab, in, symoff, symsize, stroff, strsize);
    670   1.8  jonathan 
    671   1.8  jonathan 	/* Approximate translation to ECOFF. */
    672   1.8  jonathan 	translate_syms(&elfsymtab, &ecoffsymtab);
    673   1.8  jonathan 	nsyms = ecoffsymtab.nsymbols;
    674   1.8  jonathan 
    675   1.9     lukem 	/* Compute output ECOFF symbol- and string-table offsets. */
    676   1.8  jonathan 	ecoff_symhdr_off = ep->f.f_symptr;
    677   1.8  jonathan 
    678   1.8  jonathan 	nextoff = ecoff_symhdr_off + sizeof(struct ecoff_symhdr);
    679   1.8  jonathan 	stringtaboff = nextoff;
    680   1.8  jonathan 	ecoff_strsize = ECOFF_ROUND(ecoffsymtab.stringsize,
    681  1.31  christos 	    (ECOFF32_SEGMENT_ALIGNMENT(ep)));
    682   1.8  jonathan 
    683   1.8  jonathan 
    684   1.8  jonathan 	nextoff = stringtaboff + ecoff_strsize;
    685   1.8  jonathan 	symtaboff = nextoff;
    686   1.8  jonathan 	symtabsize = nsyms * sizeof(struct ecoff_extsym);
    687  1.31  christos 	symtabsize = ECOFF_ROUND(symtabsize, ECOFF32_SEGMENT_ALIGNMENT(ep));
    688   1.8  jonathan 
    689   1.8  jonathan 	/* Write out the symbol header ... */
    690   1.9     lukem 	write_ecoff_symhdr(out, ep, &symhdr, nsyms, symtaboff,
    691   1.9     lukem 	    stringtaboff, ecoffsymtab.stringsize);
    692   1.8  jonathan 
    693   1.8  jonathan 	/* Write out the string table... */
    694   1.8  jonathan 	padding = ecoff_strsize - ecoffsymtab.stringsize;
    695   1.9     lukem 	safewrite(out, ecoffsymtab.stringtab, ecoffsymtab.stringsize,
    696  1.28  christos 	    "string table: write");
    697   1.8  jonathan 	if (padding)
    698  1.28  christos 		pad16(out, padding, "string table: padding");
    699   1.8  jonathan 
    700   1.8  jonathan 
    701   1.8  jonathan 	/* Write out the symbol table... */
    702   1.9     lukem 	padding = symtabsize - (nsyms * sizeof(struct ecoff_extsym));
    703  1.16    bouyer 
    704  1.16    bouyer 	for (i = 0; i < nsyms; i++) {
    705  1.16    bouyer 		struct ecoff_extsym *es = &ecoffsymtab.ecoff_syms[i];
    706  1.16    bouyer 		es->es_flags	= bswap16(es->es_flags);
    707  1.16    bouyer 		es->es_ifd	= bswap16(es->es_ifd);
    708  1.16    bouyer 		bswap32_region(&es->es_strindex,
    709  1.16    bouyer 		    sizeof(*es) - sizeof(es->es_flags) - sizeof(es->es_ifd));
    710  1.16    bouyer 	}
    711   1.9     lukem 	safewrite(out, ecoffsymtab.ecoff_syms,
    712   1.8  jonathan 	    nsyms * sizeof(struct ecoff_extsym),
    713  1.28  christos 	    "symbol table: write");
    714   1.8  jonathan 	if (padding)
    715  1.28  christos 		pad16(out, padding, "symbols: padding");
    716   1.8  jonathan }
    717   1.8  jonathan 
    718   1.8  jonathan 
    719   1.8  jonathan 
    720   1.8  jonathan /*
    721  1.34    andvar  * In-memory translation of ELF symbols to ECOFF.
    722   1.8  jonathan  */
    723  1.28  christos static void
    724  1.27   tsutsui translate_syms(struct elf_syms *elfp, struct ecoff_syms *ecoffp)
    725   1.8  jonathan {
    726   1.6  jonathan 
    727   1.9     lukem 	int     i;
    728   1.9     lukem 	char   *oldstringbase;
    729   1.9     lukem 	char   *newstrings, *nsp;
    730   1.9     lukem 
    731   1.9     lukem 	int     nsyms, idx;
    732   1.9     lukem 
    733   1.9     lukem 	nsyms = elfp->nsymbols;
    734   1.9     lukem 	oldstringbase = elfp->stringtab;
    735   1.9     lukem 
    736   1.9     lukem 	/* Allocate space for corresponding ECOFF symbols. */
    737  1.10     perry 	memset(ecoffp, 0, sizeof(*ecoffp));
    738   1.9     lukem 
    739   1.9     lukem 	ecoffp->nsymbols = 0;
    740   1.9     lukem 	ecoffp->ecoff_syms = malloc(sizeof(struct ecoff_extsym) * nsyms);
    741   1.9     lukem 
    742   1.9     lukem 	/* we are going to be no bigger than the ELF symbol table. */
    743   1.9     lukem 	ecoffp->stringsize = elfp->stringsize;
    744   1.9     lukem 	ecoffp->stringtab = malloc(elfp->stringsize);
    745   1.9     lukem 
    746   1.9     lukem 	newstrings = (char *) ecoffp->stringtab;
    747   1.9     lukem 	nsp = (char *) ecoffp->stringtab;
    748  1.28  christos 	if (newstrings == NULL)
    749  1.28  christos 		errx(1, "No memory for new string table");
    750   1.9     lukem 	/* Copy and translate  symbols... */
    751   1.9     lukem 	idx = 0;
    752   1.9     lukem 	for (i = 0; i < nsyms; i++) {
    753  1.29  christos 		int     binding;
    754   1.9     lukem 
    755  1.13  drochner 		binding = ELF32_ST_BIND((elfp->elf_syms[i].st_info));
    756   1.9     lukem 
    757   1.9     lukem 		/* skip strange symbols */
    758   1.9     lukem 		if (binding == 0) {
    759   1.9     lukem 			continue;
    760   1.9     lukem 		}
    761   1.9     lukem 		/* Copy the symbol into the new table */
    762   1.9     lukem 		strcpy(nsp, oldstringbase + elfp->elf_syms[i].st_name);
    763   1.9     lukem 		ecoffp->ecoff_syms[idx].es_strindex = nsp - newstrings;
    764   1.9     lukem 		nsp += strlen(nsp) + 1;
    765   1.9     lukem 
    766   1.9     lukem 		/* translate symbol types to ECOFF XXX */
    767   1.9     lukem 		ecoffp->ecoff_syms[idx].es_type = 1;
    768   1.9     lukem 		ecoffp->ecoff_syms[idx].es_class = 5;
    769   1.9     lukem 
    770   1.9     lukem 		/* Symbol values in executables should be compatible. */
    771   1.9     lukem 		ecoffp->ecoff_syms[idx].es_value = elfp->elf_syms[i].st_value;
    772   1.9     lukem 		ecoffp->ecoff_syms[idx].es_symauxindex = 0xfffff;
    773   1.8  jonathan 
    774   1.9     lukem 		idx++;
    775   1.8  jonathan 	}
    776   1.8  jonathan 
    777   1.9     lukem 	ecoffp->nsymbols = idx;
    778   1.9     lukem 	ecoffp->stringsize = nsp - newstrings;
    779   1.8  jonathan }
    780   1.8  jonathan /*
    781   1.8  jonathan  * pad to a 16-byte boundary
    782   1.8  jonathan  */
    783  1.28  christos static void
    784   1.8  jonathan pad16(int fd, int size, const char *msg)
    785   1.8  jonathan {
    786  1.27   tsutsui 
    787   1.9     lukem 	safewrite(fd, "\0\0\0\0\0\0\0\0\0\0\0\0\0\0", size, msg);
    788  1.16    bouyer }
    789  1.16    bouyer 
    790  1.16    bouyer /* swap a 32bit region */
    791  1.28  christos static void
    792  1.22    simonb bswap32_region(int32_t* p, int len)
    793  1.16    bouyer {
    794  1.23   tsutsui 	size_t i;
    795  1.16    bouyer 
    796  1.22    simonb 	for (i = 0; i < len / sizeof(int32_t); i++, p++)
    797  1.16    bouyer 		*p = bswap32(*p);
    798   1.1  jonathan }
    799