elf2ecoff.c revision 1.32 1 1.32 christos /* $NetBSD: elf2ecoff.c,v 1.32 2017/02/24 13:03:25 christos 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 1.28 christos static int debug = 0;
78 1.28 christos static int needswap;
79 1.6 jonathan
80 1.28 christos static int phcmp(Elf32_Phdr *, Elf32_Phdr *);
81 1.28 christos static char *saveRead(int, off_t, off_t, const char *);
82 1.28 christos static void safewrite(int, const void *, off_t, const char *);
83 1.28 christos static void copy(int, int, off_t, off_t);
84 1.28 christos static void combine(struct sect *, struct sect *, int);
85 1.28 christos static void translate_syms(struct elf_syms *, struct ecoff_syms *);
86 1.31 christos static void elf_symbol_table_to_ecoff(int, int, struct ecoff32_exechdr *,
87 1.28 christos off_t, off_t, off_t, off_t);
88 1.31 christos static int make_ecoff_section_hdrs(struct ecoff32_exechdr *,
89 1.31 christos struct ecoff32_scnhdr *);
90 1.31 christos static void write_ecoff_symhdr(int, struct ecoff32_exechdr *,
91 1.31 christos struct ecoff32_symhdr *, int32_t, int32_t, int32_t, int32_t);
92 1.28 christos static void pad16(int, int, const char *);
93 1.28 christos static void bswap32_region(int32_t* , int);
94 1.28 christos static void elf_read_syms(struct elf_syms *, int, off_t, off_t, off_t,
95 1.28 christos off_t);
96 1.8 jonathan
97 1.8 jonathan
98 1.6 jonathan int
99 1.28 christos main(int argc, char **argv)
100 1.1 jonathan {
101 1.9 lukem Elf32_Ehdr ex;
102 1.9 lukem Elf32_Phdr *ph;
103 1.9 lukem Elf32_Shdr *sh;
104 1.9 lukem char *shstrtab;
105 1.9 lukem int strtabix, symtabix;
106 1.23 tsutsui size_t i;
107 1.23 tsutsui int pad;
108 1.9 lukem struct sect text, data, bss; /* a.out-compatible sections */
109 1.9 lukem
110 1.31 christos struct ecoff32_exechdr ep;
111 1.31 christos struct ecoff32_scnhdr esecs[6];
112 1.31 christos struct ecoff32_symhdr symhdr;
113 1.9 lukem
114 1.9 lukem int infile, outfile;
115 1.31 christos uint32_t cur_vma = UINT32_MAX;
116 1.9 lukem int nsecs = 0;
117 1.16 bouyer int mipsel;
118 1.16 bouyer
119 1.9 lukem
120 1.9 lukem text.len = data.len = bss.len = 0;
121 1.9 lukem text.vaddr = data.vaddr = bss.vaddr = 0;
122 1.9 lukem
123 1.9 lukem /* Check args... */
124 1.9 lukem if (argc < 3 || argc > 4) {
125 1.9 lukem usage:
126 1.9 lukem fprintf(stderr,
127 1.28 christos "Usage: %s <elf executable> <ECOFF executable> [-s]\n",
128 1.28 christos getprogname());
129 1.9 lukem exit(1);
130 1.9 lukem }
131 1.9 lukem if (argc == 4) {
132 1.9 lukem if (strcmp(argv[3], "-s"))
133 1.9 lukem goto usage;
134 1.1 jonathan }
135 1.9 lukem /* Try the input file... */
136 1.28 christos if ((infile = open(argv[1], O_RDONLY)) < 0)
137 1.28 christos err(1, "Can't open %s for read", argv[1]);
138 1.9 lukem /* Read the header, which is at the beginning of the file... */
139 1.9 lukem i = read(infile, &ex, sizeof ex);
140 1.28 christos if (i != sizeof ex)
141 1.28 christos err(1, "Short header read from %s", argv[1]);
142 1.16 bouyer if (ex.e_ident[EI_DATA] == ELFDATA2LSB)
143 1.16 bouyer mipsel = 1;
144 1.16 bouyer else if (ex.e_ident[EI_DATA] == ELFDATA2MSB)
145 1.16 bouyer mipsel = 0;
146 1.28 christos else
147 1.28 christos errx(1, "invalid ELF byte order %d", ex.e_ident[EI_DATA]);
148 1.16 bouyer #if BYTE_ORDER == BIG_ENDIAN
149 1.16 bouyer if (mipsel)
150 1.16 bouyer needswap = 1;
151 1.16 bouyer else
152 1.16 bouyer needswap = 0;
153 1.16 bouyer #elif BYTE_ORDER == LITTLE_ENDIAN
154 1.16 bouyer if (mipsel)
155 1.16 bouyer needswap = 0;
156 1.16 bouyer else
157 1.16 bouyer needswap = 1;
158 1.16 bouyer #else
159 1.16 bouyer #error "unknown endian"
160 1.16 bouyer #endif
161 1.16 bouyer
162 1.16 bouyer if (needswap) {
163 1.16 bouyer ex.e_type = bswap16(ex.e_type);
164 1.16 bouyer ex.e_machine = bswap16(ex.e_machine);
165 1.16 bouyer ex.e_version = bswap32(ex.e_version);
166 1.16 bouyer ex.e_entry = bswap32(ex.e_entry);
167 1.16 bouyer ex.e_phoff = bswap32(ex.e_phoff);
168 1.16 bouyer ex.e_shoff = bswap32(ex.e_shoff);
169 1.16 bouyer ex.e_flags = bswap32(ex.e_flags);
170 1.16 bouyer ex.e_ehsize = bswap16(ex.e_ehsize);
171 1.16 bouyer ex.e_phentsize = bswap16(ex.e_phentsize);
172 1.16 bouyer ex.e_phnum = bswap16(ex.e_phnum);
173 1.16 bouyer ex.e_shentsize = bswap16(ex.e_shentsize);
174 1.16 bouyer ex.e_shnum = bswap16(ex.e_shnum);
175 1.16 bouyer ex.e_shstrndx = bswap16(ex.e_shstrndx);
176 1.16 bouyer }
177 1.16 bouyer
178 1.9 lukem /* Read the program headers... */
179 1.9 lukem ph = (Elf32_Phdr *) saveRead(infile, ex.e_phoff,
180 1.9 lukem ex.e_phnum * sizeof(Elf32_Phdr), "ph");
181 1.16 bouyer if (needswap)
182 1.22 simonb bswap32_region((int32_t*)ph, sizeof(Elf32_Phdr) * ex.e_phnum);
183 1.9 lukem /* Read the section headers... */
184 1.9 lukem sh = (Elf32_Shdr *) saveRead(infile, ex.e_shoff,
185 1.9 lukem ex.e_shnum * sizeof(Elf32_Shdr), "sh");
186 1.16 bouyer if (needswap)
187 1.22 simonb bswap32_region((int32_t*)sh, sizeof(Elf32_Shdr) * ex.e_shnum);
188 1.16 bouyer
189 1.9 lukem /* Read in the section string table. */
190 1.9 lukem shstrtab = saveRead(infile, sh[ex.e_shstrndx].sh_offset,
191 1.9 lukem sh[ex.e_shstrndx].sh_size, "shstrtab");
192 1.9 lukem
193 1.9 lukem
194 1.9 lukem /* Look for the symbol table and string table... Also map section
195 1.9 lukem * indices to symbol types for a.out */
196 1.9 lukem symtabix = 0;
197 1.9 lukem strtabix = 0;
198 1.9 lukem for (i = 0; i < ex.e_shnum; i++) {
199 1.9 lukem char *name = shstrtab + sh[i].sh_name;
200 1.9 lukem if (!strcmp(name, ".symtab"))
201 1.9 lukem symtabix = i;
202 1.9 lukem else
203 1.9 lukem if (!strcmp(name, ".strtab"))
204 1.9 lukem strtabix = i;
205 1.1 jonathan
206 1.9 lukem }
207 1.6 jonathan
208 1.28 christos /*
209 1.28 christos * Figure out if we can cram the program header into an ECOFF
210 1.9 lukem * header... Basically, we can't handle anything but loadable
211 1.9 lukem * segments, but we can ignore some kinds of segments. We can't
212 1.9 lukem * handle holes in the address space. Segments may be out of order,
213 1.28 christos * so we sort them first.
214 1.28 christos */
215 1.9 lukem
216 1.9 lukem qsort(ph, ex.e_phnum, sizeof(Elf32_Phdr),
217 1.9 lukem (int (*) (const void *, const void *)) phcmp);
218 1.9 lukem
219 1.9 lukem for (i = 0; i < ex.e_phnum; i++) {
220 1.30 christos switch (ph[i].p_type) {
221 1.30 christos case PT_NOTE:
222 1.30 christos case PT_NULL:
223 1.30 christos case PT_PHDR:
224 1.30 christos case PT_MIPS_ABIFLAGS:
225 1.30 christos case PT_MIPS_REGINFO:
226 1.30 christos /* Section types we can ignore... */
227 1.9 lukem if (debug) {
228 1.30 christos fprintf(stderr, " skipping PH %zu type %#x "
229 1.30 christos "flags %#x\n",
230 1.9 lukem i, ph[i].p_type, ph[i].p_flags);
231 1.9 lukem }
232 1.9 lukem continue;
233 1.30 christos default:
234 1.30 christos /* Section types we can't handle... */
235 1.28 christos if (ph[i].p_type != PT_LOAD)
236 1.30 christos errx(1, "Program header %zu type %#x can't be "
237 1.28 christos "converted", i, ph[i].p_type);
238 1.30 christos }
239 1.9 lukem /* Writable (data) segment? */
240 1.9 lukem if (ph[i].p_flags & PF_W) {
241 1.9 lukem struct sect ndata, nbss;
242 1.9 lukem
243 1.9 lukem ndata.vaddr = ph[i].p_vaddr;
244 1.9 lukem ndata.len = ph[i].p_filesz;
245 1.9 lukem nbss.vaddr = ph[i].p_vaddr + ph[i].p_filesz;
246 1.9 lukem nbss.len = ph[i].p_memsz - ph[i].p_filesz;
247 1.9 lukem
248 1.9 lukem if (debug) {
249 1.28 christos fprintf(stderr, " combinining PH %zu type %d "
250 1.31 christos "flags 0x%x with data, ndata = %d, "
251 1.31 christos "nbss =%d\n", i, ph[i].p_type,
252 1.28 christos ph[i].p_flags, ndata.len, nbss.len);
253 1.9 lukem }
254 1.9 lukem combine(&data, &ndata, 0);
255 1.9 lukem combine(&bss, &nbss, 1);
256 1.9 lukem } else {
257 1.9 lukem struct sect ntxt;
258 1.9 lukem
259 1.9 lukem ntxt.vaddr = ph[i].p_vaddr;
260 1.9 lukem ntxt.len = ph[i].p_filesz;
261 1.9 lukem if (debug) {
262 1.28 christos fprintf(stderr, " combinining PH %zu type %d "
263 1.31 christos "flags 0x%x with text, len = %d\n",
264 1.9 lukem i, ph[i].p_type, ph[i].p_flags, ntxt.len);
265 1.9 lukem }
266 1.9 lukem combine(&text, &ntxt, 0);
267 1.9 lukem }
268 1.9 lukem /* Remember the lowest segment start address. */
269 1.9 lukem if (ph[i].p_vaddr < cur_vma)
270 1.9 lukem cur_vma = ph[i].p_vaddr;
271 1.1 jonathan }
272 1.1 jonathan
273 1.9 lukem /* Sections must be in order to be converted... */
274 1.9 lukem if (text.vaddr > data.vaddr || data.vaddr > bss.vaddr ||
275 1.28 christos text.vaddr + text.len > data.vaddr ||
276 1.28 christos data.vaddr + data.len > bss.vaddr)
277 1.28 christos errx(1, "Sections ordering prevents a.out conversion");
278 1.9 lukem /* If there's a data section but no text section, then the loader
279 1.9 lukem * combined everything into one section. That needs to be the text
280 1.9 lukem * section, so just make the data section zero length following text. */
281 1.27 tsutsui if (data.len && text.len == 0) {
282 1.9 lukem text = data;
283 1.9 lukem data.vaddr = text.vaddr + text.len;
284 1.9 lukem data.len = 0;
285 1.9 lukem }
286 1.9 lukem /* If there is a gap between text and data, we'll fill it when we copy
287 1.9 lukem * the data, so update the length of the text segment as represented
288 1.9 lukem * in a.out to reflect that, since a.out doesn't allow gaps in the
289 1.9 lukem * program address space. */
290 1.9 lukem if (text.vaddr + text.len < data.vaddr)
291 1.9 lukem text.len = data.vaddr - text.vaddr;
292 1.9 lukem
293 1.9 lukem /* We now have enough information to cons up an a.out header... */
294 1.9 lukem ep.a.magic = ECOFF_OMAGIC;
295 1.9 lukem ep.a.vstamp = 2 * 256 + 10; /* compatible with version 2.10 */
296 1.9 lukem ep.a.tsize = text.len;
297 1.9 lukem ep.a.dsize = data.len;
298 1.9 lukem ep.a.bsize = bss.len;
299 1.9 lukem ep.a.entry = ex.e_entry;
300 1.9 lukem ep.a.text_start = text.vaddr;
301 1.9 lukem ep.a.data_start = data.vaddr;
302 1.9 lukem ep.a.bss_start = bss.vaddr;
303 1.9 lukem ep.a.gprmask = 0xf3fffffe;
304 1.10 perry memset(&ep.a.cprmask, 0, sizeof ep.a.cprmask);
305 1.9 lukem ep.a.gp_value = 0; /* unused. */
306 1.9 lukem
307 1.16 bouyer if (mipsel)
308 1.15 bouyer ep.f.f_magic = ECOFF_MAGIC_MIPSEL;
309 1.16 bouyer else
310 1.15 bouyer ep.f.f_magic = ECOFF_MAGIC_MIPSEB;
311 1.15 bouyer
312 1.9 lukem ep.f.f_nscns = 6;
313 1.9 lukem ep.f.f_timdat = 0; /* bogus */
314 1.9 lukem ep.f.f_symptr = 0;
315 1.31 christos ep.f.f_nsyms = sizeof(struct ecoff32_symhdr);
316 1.9 lukem ep.f.f_opthdr = sizeof ep.a;
317 1.9 lukem ep.f.f_flags = 0x100f; /* Stripped, not sharable. */
318 1.9 lukem
319 1.10 perry memset(esecs, 0, sizeof(esecs));
320 1.9 lukem
321 1.9 lukem /* Make ECOFF section headers, with empty stubs for
322 1.9 lukem * .rdata/.sdata/.sbss. */
323 1.9 lukem make_ecoff_section_hdrs(&ep, esecs);
324 1.9 lukem
325 1.9 lukem nsecs = ep.f.f_nscns;
326 1.9 lukem
327 1.16 bouyer if (needswap) {
328 1.16 bouyer ep.f.f_magic = bswap16(ep.f.f_magic);
329 1.16 bouyer ep.f.f_nscns = bswap16(ep.f.f_nscns);
330 1.16 bouyer ep.f.f_timdat = bswap32(ep.f.f_timdat);
331 1.16 bouyer ep.f.f_symptr = bswap32(ep.f.f_symptr);
332 1.16 bouyer ep.f.f_nsyms = bswap32(ep.f.f_nsyms);
333 1.16 bouyer ep.f.f_opthdr = bswap16(ep.f.f_opthdr);
334 1.16 bouyer ep.f.f_flags = bswap16(ep.f.f_flags);
335 1.16 bouyer ep.a.magic = bswap16(ep.a.magic);
336 1.16 bouyer ep.a.vstamp = bswap16(ep.a.vstamp);
337 1.16 bouyer ep.a.tsize = bswap32(ep.a.tsize);
338 1.16 bouyer ep.a.dsize = bswap32(ep.a.dsize);
339 1.16 bouyer ep.a.bsize = bswap32(ep.a.bsize);
340 1.16 bouyer ep.a.entry = bswap32(ep.a.entry);
341 1.16 bouyer ep.a.text_start = bswap32(ep.a.text_start);
342 1.16 bouyer ep.a.data_start = bswap32(ep.a.data_start);
343 1.16 bouyer ep.a.bss_start = bswap32(ep.a.bss_start);
344 1.16 bouyer ep.a.gprmask = bswap32(ep.a.gprmask);
345 1.22 simonb bswap32_region((int32_t*)ep.a.cprmask, sizeof(ep.a.cprmask));
346 1.16 bouyer ep.a.gp_value = bswap32(ep.a.gp_value);
347 1.16 bouyer for (i = 0; i < sizeof(esecs) / sizeof(esecs[0]); i++) {
348 1.16 bouyer esecs[i].s_paddr = bswap32(esecs[i].s_paddr);
349 1.16 bouyer esecs[i].s_vaddr = bswap32(esecs[i].s_vaddr);
350 1.16 bouyer esecs[i].s_size = bswap32(esecs[i].s_size);
351 1.16 bouyer esecs[i].s_scnptr = bswap32(esecs[i].s_scnptr);
352 1.16 bouyer esecs[i].s_relptr = bswap32(esecs[i].s_relptr);
353 1.16 bouyer esecs[i].s_lnnoptr = bswap32(esecs[i].s_lnnoptr);
354 1.16 bouyer esecs[i].s_nreloc = bswap16(esecs[i].s_nreloc);
355 1.16 bouyer esecs[i].s_nlnno = bswap16(esecs[i].s_nlnno);
356 1.16 bouyer esecs[i].s_flags = bswap32(esecs[i].s_flags);
357 1.16 bouyer }
358 1.16 bouyer }
359 1.16 bouyer
360 1.9 lukem /* Make the output file... */
361 1.28 christos if ((outfile = open(argv[2], O_WRONLY | O_CREAT, 0777)) < 0)
362 1.28 christos err(1, "Unable to create %s", argv[2]);
363 1.28 christos
364 1.11 simonb /* Truncate file... */
365 1.11 simonb if (ftruncate(outfile, 0)) {
366 1.11 simonb warn("ftruncate %s", argv[2]);
367 1.11 simonb }
368 1.9 lukem /* Write the headers... */
369 1.28 christos safewrite(outfile, &ep.f, sizeof(ep.f), "ep.f: write");
370 1.11 simonb if (debug)
371 1.24 matt fprintf(stderr, "wrote %zu byte file header.\n", sizeof(ep.f));
372 1.9 lukem
373 1.28 christos safewrite(outfile, &ep.a, sizeof(ep.a), "ep.a: write");
374 1.11 simonb if (debug)
375 1.24 matt fprintf(stderr, "wrote %zu byte a.out header.\n", sizeof(ep.a));
376 1.9 lukem
377 1.28 christos safewrite(outfile, &esecs, sizeof(esecs[0]) * nsecs, "esecs: write");
378 1.11 simonb if (debug)
379 1.24 matt fprintf(stderr, "wrote %zu bytes of section headers.\n",
380 1.11 simonb sizeof(esecs[0]) * nsecs);
381 1.9 lukem
382 1.9 lukem
383 1.9 lukem pad = ((sizeof ep.f + sizeof ep.a + sizeof esecs) & 15);
384 1.9 lukem if (pad) {
385 1.9 lukem pad = 16 - pad;
386 1.28 christos pad16(outfile, pad, "ipad: write");
387 1.11 simonb if (debug)
388 1.11 simonb fprintf(stderr, "wrote %d byte pad.\n", pad);
389 1.9 lukem }
390 1.9 lukem /* Copy the loadable sections. Zero-fill any gaps less than 64k;
391 1.9 lukem * complain about any zero-filling, and die if we're asked to
392 1.9 lukem * zero-fill more than 64k. */
393 1.9 lukem for (i = 0; i < ex.e_phnum; i++) {
394 1.9 lukem /* Unprocessable sections were handled above, so just verify
395 1.9 lukem * that the section can be loaded before copying. */
396 1.13 drochner if (ph[i].p_type == PT_LOAD && ph[i].p_filesz) {
397 1.9 lukem if (cur_vma != ph[i].p_vaddr) {
398 1.31 christos uint32_t gap = ph[i].p_vaddr - cur_vma;
399 1.9 lukem char obuf[1024];
400 1.28 christos if (gap > 65536)
401 1.31 christos errx(1, "Intersegment gap (%d bytes) "
402 1.28 christos "too large", gap);
403 1.11 simonb if (debug)
404 1.31 christos fprintf(stderr, "Warning: %d byte "
405 1.28 christos "intersegment gap.\n", gap);
406 1.9 lukem memset(obuf, 0, sizeof obuf);
407 1.9 lukem while (gap) {
408 1.28 christos int count = write(outfile, obuf,
409 1.28 christos (gap > sizeof obuf
410 1.28 christos ? sizeof obuf : gap));
411 1.28 christos if (count < 0)
412 1.28 christos err(1, "Error writing gap");
413 1.9 lukem gap -= count;
414 1.9 lukem }
415 1.9 lukem }
416 1.11 simonb if (debug)
417 1.28 christos fprintf(stderr, "writing %d bytes...\n",
418 1.28 christos ph[i].p_filesz);
419 1.9 lukem copy(outfile, infile, ph[i].p_offset, ph[i].p_filesz);
420 1.9 lukem cur_vma = ph[i].p_vaddr + ph[i].p_filesz;
421 1.9 lukem }
422 1.9 lukem }
423 1.9 lukem
424 1.9 lukem
425 1.9 lukem if (debug)
426 1.9 lukem fprintf(stderr, "writing syms at offset 0x%lx\n",
427 1.31 christos (uint32_t) ep.f.f_symptr + sizeof(symhdr));
428 1.9 lukem
429 1.9 lukem /* Copy and translate the symbol table... */
430 1.9 lukem elf_symbol_table_to_ecoff(outfile, infile, &ep,
431 1.9 lukem sh[symtabix].sh_offset, sh[symtabix].sh_size,
432 1.9 lukem sh[strtabix].sh_offset, sh[strtabix].sh_size);
433 1.9 lukem
434 1.9 lukem /*
435 1.9 lukem * Write a page of padding for boot PROMS that read entire pages.
436 1.9 lukem * Without this, they may attempt to read past the end of the
437 1.9 lukem * data section, incur an error, and refuse to boot.
438 1.9 lukem */
439 1.1 jonathan {
440 1.9 lukem char obuf[4096];
441 1.9 lukem memset(obuf, 0, sizeof obuf);
442 1.28 christos if (write(outfile, obuf, sizeof(obuf)) != sizeof(obuf))
443 1.28 christos err(1, "Error writing PROM padding");
444 1.9 lukem }
445 1.6 jonathan
446 1.9 lukem /* Looks like we won... */
447 1.28 christos return 0;
448 1.1 jonathan }
449 1.1 jonathan
450 1.28 christos static void
451 1.27 tsutsui copy(int out, int in, off_t offset, off_t size)
452 1.9 lukem {
453 1.9 lukem char ibuf[4096];
454 1.23 tsutsui size_t remaining, cur, count;
455 1.9 lukem
456 1.14 soren /* Go to the start of the ELF symbol table... */
457 1.28 christos if (lseek(in, offset, SEEK_SET) < 0)
458 1.28 christos err(1, "copy: lseek");
459 1.9 lukem remaining = size;
460 1.9 lukem while (remaining) {
461 1.9 lukem cur = remaining;
462 1.9 lukem if (cur > sizeof ibuf)
463 1.9 lukem cur = sizeof ibuf;
464 1.9 lukem remaining -= cur;
465 1.28 christos if ((count = read(in, ibuf, cur)) != cur)
466 1.28 christos err(1, "copy: short read");
467 1.28 christos safewrite(out, ibuf, cur, "copy: write");
468 1.1 jonathan }
469 1.1 jonathan }
470 1.28 christos
471 1.1 jonathan /* Combine two segments, which must be contiguous. If pad is true, it's
472 1.1 jonathan okay for there to be padding between. */
473 1.28 christos static void
474 1.27 tsutsui combine(struct sect *base, struct sect *new, int pad)
475 1.9 lukem {
476 1.27 tsutsui
477 1.27 tsutsui if (base->len == 0)
478 1.9 lukem *base = *new;
479 1.9 lukem else
480 1.9 lukem if (new->len) {
481 1.9 lukem if (base->vaddr + base->len != new->vaddr) {
482 1.9 lukem if (pad)
483 1.9 lukem base->len = new->vaddr - base->vaddr;
484 1.28 christos else
485 1.28 christos errx(1, "Non-contiguous data can't be "
486 1.28 christos "converted");
487 1.9 lukem }
488 1.9 lukem base->len += new->len;
489 1.9 lukem }
490 1.1 jonathan }
491 1.1 jonathan
492 1.28 christos static int
493 1.27 tsutsui phcmp(Elf32_Phdr *h1, Elf32_Phdr *h2)
494 1.1 jonathan {
495 1.27 tsutsui
496 1.9 lukem if (h1->p_vaddr > h2->p_vaddr)
497 1.9 lukem return 1;
498 1.9 lukem else
499 1.9 lukem if (h1->p_vaddr < h2->p_vaddr)
500 1.9 lukem return -1;
501 1.9 lukem else
502 1.9 lukem return 0;
503 1.1 jonathan }
504 1.1 jonathan
505 1.28 christos static char *
506 1.23 tsutsui saveRead(int file, off_t offset, off_t len, const char *name)
507 1.1 jonathan {
508 1.9 lukem char *tmp;
509 1.9 lukem int count;
510 1.9 lukem off_t off;
511 1.27 tsutsui
512 1.28 christos if ((off = lseek(file, offset, SEEK_SET)) < 0)
513 1.28 christos err(1, "%s: fseek", name);
514 1.28 christos if ((tmp = malloc(len)) == NULL)
515 1.32 christos err(1, "%s: Can't allocate %jd bytes", name, (intmax_t)len);
516 1.9 lukem count = read(file, tmp, len);
517 1.28 christos if (count != len)
518 1.28 christos err(1, "%s: short read", name);
519 1.9 lukem return tmp;
520 1.6 jonathan }
521 1.6 jonathan
522 1.28 christos static void
523 1.23 tsutsui safewrite(int outfile, const void *buf, off_t len, const char *msg)
524 1.8 jonathan {
525 1.28 christos ssize_t written;
526 1.27 tsutsui
527 1.23 tsutsui written = write(outfile, buf, len);
528 1.28 christos if (written != len)
529 1.28 christos err(1, "%s", msg);
530 1.8 jonathan }
531 1.8 jonathan
532 1.6 jonathan
533 1.8 jonathan /*
534 1.8 jonathan * Output only three ECOFF sections, corresponding to ELF psecs
535 1.8 jonathan * for text, data, and bss.
536 1.6 jonathan */
537 1.28 christos static int
538 1.31 christos make_ecoff_section_hdrs(struct ecoff32_exechdr *ep, struct ecoff32_scnhdr *esecs)
539 1.27 tsutsui {
540 1.6 jonathan
541 1.8 jonathan ep->f.f_nscns = 6; /* XXX */
542 1.6 jonathan
543 1.9 lukem strcpy(esecs[0].s_name, ".text");
544 1.9 lukem strcpy(esecs[1].s_name, ".data");
545 1.9 lukem strcpy(esecs[2].s_name, ".bss");
546 1.9 lukem
547 1.9 lukem esecs[0].s_paddr = esecs[0].s_vaddr = ep->a.text_start;
548 1.9 lukem esecs[1].s_paddr = esecs[1].s_vaddr = ep->a.data_start;
549 1.9 lukem esecs[2].s_paddr = esecs[2].s_vaddr = ep->a.bss_start;
550 1.9 lukem esecs[0].s_size = ep->a.tsize;
551 1.9 lukem esecs[1].s_size = ep->a.dsize;
552 1.9 lukem esecs[2].s_size = ep->a.bsize;
553 1.6 jonathan
554 1.31 christos esecs[0].s_scnptr = ECOFF32_TXTOFF(ep);
555 1.31 christos esecs[1].s_scnptr = ECOFF32_DATOFF(ep);
556 1.6 jonathan #if 0
557 1.9 lukem esecs[2].s_scnptr = esecs[1].s_scnptr +
558 1.31 christos ECOFF_ROUND(esecs[1].s_size, ECOFF32_SEGMENT_ALIGNMENT(ep));
559 1.6 jonathan #endif
560 1.6 jonathan
561 1.9 lukem esecs[0].s_relptr = esecs[1].s_relptr = esecs[2].s_relptr = 0;
562 1.9 lukem esecs[0].s_lnnoptr = esecs[1].s_lnnoptr = esecs[2].s_lnnoptr = 0;
563 1.9 lukem esecs[0].s_nreloc = esecs[1].s_nreloc = esecs[2].s_nreloc = 0;
564 1.9 lukem esecs[0].s_nlnno = esecs[1].s_nlnno = esecs[2].s_nlnno = 0;
565 1.8 jonathan
566 1.8 jonathan esecs[1].s_flags = 0x100; /* ECOFF rdata */
567 1.8 jonathan esecs[3].s_flags = 0x200; /* ECOFF sdata */
568 1.8 jonathan esecs[4].s_flags = 0x400; /* ECOFF sbss */
569 1.8 jonathan
570 1.8 jonathan /*
571 1.8 jonathan * Set the symbol-table offset to point at the end of any
572 1.8 jonathan * sections we loaded above, so later code can use it to write
573 1.8 jonathan * symbol table info..
574 1.8 jonathan */
575 1.8 jonathan ep->f.f_symptr = esecs[1].s_scnptr + esecs[1].s_size;
576 1.9 lukem return (ep->f.f_nscns);
577 1.8 jonathan }
578 1.8 jonathan
579 1.8 jonathan
580 1.8 jonathan /*
581 1.8 jonathan * Write the ECOFF symbol header.
582 1.8 jonathan * Guess at how big the symbol table will be.
583 1.8 jonathan * Mark all symbols as EXTERN (for now).
584 1.8 jonathan */
585 1.28 christos static void
586 1.31 christos write_ecoff_symhdr(int out, struct ecoff32_exechdr *ep,
587 1.31 christos struct ecoff32_symhdr *symhdrp, int32_t nesyms,
588 1.31 christos int32_t extsymoff, int32_t extstroff, int32_t strsize)
589 1.8 jonathan {
590 1.27 tsutsui
591 1.8 jonathan if (debug)
592 1.28 christos fprintf(stderr,
593 1.31 christos "writing symhdr for %d entries at offset 0x%x\n",
594 1.31 christos nesyms, ep->f.f_symptr);
595 1.8 jonathan
596 1.31 christos ep->f.f_nsyms = sizeof(struct ecoff32_symhdr);
597 1.8 jonathan
598 1.10 perry memset(symhdrp, 0, sizeof(*symhdrp));
599 1.8 jonathan symhdrp->esymMax = nesyms;
600 1.9 lukem symhdrp->magic = 0x7009;/* XXX */
601 1.8 jonathan symhdrp->cbExtOffset = extsymoff;
602 1.8 jonathan symhdrp->cbSsExtOffset = extstroff;
603 1.8 jonathan
604 1.8 jonathan symhdrp->issExtMax = strsize;
605 1.8 jonathan if (debug)
606 1.8 jonathan fprintf(stderr,
607 1.31 christos "ECOFF symhdr: symhdr %zx, strsize %x, symsize %zx\n",
608 1.8 jonathan sizeof(*symhdrp), strsize,
609 1.31 christos (nesyms * sizeof(struct ecoff32_extsym)));
610 1.8 jonathan
611 1.16 bouyer if (needswap) {
612 1.22 simonb bswap32_region(&symhdrp->ilineMax,
613 1.16 bouyer sizeof(*symhdrp) - sizeof(symhdrp->magic) -
614 1.16 bouyer sizeof(symhdrp->ilineMax));
615 1.16 bouyer symhdrp->magic = bswap16(symhdrp->magic);
616 1.16 bouyer symhdrp->ilineMax = bswap16(symhdrp->ilineMax);
617 1.16 bouyer }
618 1.27 tsutsui
619 1.8 jonathan safewrite(out, symhdrp, sizeof(*symhdrp),
620 1.28 christos "writing symbol header");
621 1.8 jonathan }
622 1.8 jonathan
623 1.8 jonathan
624 1.28 christos static void
625 1.27 tsutsui elf_read_syms(struct elf_syms *elfsymsp, int in, off_t symoff, off_t symsize,
626 1.27 tsutsui off_t stroff, off_t strsize)
627 1.8 jonathan {
628 1.31 christos int nsyms;
629 1.16 bouyer int i;
630 1.9 lukem nsyms = symsize / sizeof(Elf32_Sym);
631 1.8 jonathan
632 1.8 jonathan /* Suck in the ELF symbol list... */
633 1.8 jonathan elfsymsp->elf_syms = (Elf32_Sym *)
634 1.9 lukem saveRead(in, symoff, nsyms * sizeof(Elf32_Sym),
635 1.9 lukem "ELF symboltable");
636 1.8 jonathan elfsymsp->nsymbols = nsyms;
637 1.16 bouyer if (needswap) {
638 1.16 bouyer for (i = 0; i < nsyms; i++) {
639 1.16 bouyer Elf32_Sym *s = &elfsymsp->elf_syms[i];
640 1.16 bouyer s->st_name = bswap32(s->st_name);
641 1.16 bouyer s->st_value = bswap32(s->st_value);
642 1.16 bouyer s->st_size = bswap32(s->st_size);
643 1.16 bouyer s->st_shndx = bswap16(s->st_shndx);
644 1.16 bouyer }
645 1.16 bouyer }
646 1.8 jonathan
647 1.8 jonathan /* Suck in the ELF string table... */
648 1.8 jonathan elfsymsp->stringtab = (char *)
649 1.9 lukem saveRead(in, stroff, strsize, "ELF string table");
650 1.8 jonathan elfsymsp->stringsize = strsize;
651 1.8 jonathan }
652 1.8 jonathan
653 1.8 jonathan
654 1.28 christos static void
655 1.31 christos elf_symbol_table_to_ecoff(int out, int in, struct ecoff32_exechdr *ep,
656 1.27 tsutsui off_t symoff, off_t symsize, off_t stroff, off_t strsize)
657 1.8 jonathan {
658 1.8 jonathan
659 1.8 jonathan struct elf_syms elfsymtab;
660 1.8 jonathan struct ecoff_syms ecoffsymtab;
661 1.31 christos uint32_t ecoff_symhdr_off, symtaboff, stringtaboff;
662 1.31 christos uint32_t nextoff, symtabsize, ecoff_strsize;
663 1.16 bouyer int nsyms, i;
664 1.31 christos struct ecoff32_symhdr symhdr;
665 1.9 lukem int padding;
666 1.9 lukem
667 1.8 jonathan /* Read in the ELF symbols. */
668 1.8 jonathan elf_read_syms(&elfsymtab, in, symoff, symsize, stroff, strsize);
669 1.8 jonathan
670 1.8 jonathan /* Approximate translation to ECOFF. */
671 1.8 jonathan translate_syms(&elfsymtab, &ecoffsymtab);
672 1.8 jonathan nsyms = ecoffsymtab.nsymbols;
673 1.8 jonathan
674 1.9 lukem /* Compute output ECOFF symbol- and string-table offsets. */
675 1.8 jonathan ecoff_symhdr_off = ep->f.f_symptr;
676 1.8 jonathan
677 1.8 jonathan nextoff = ecoff_symhdr_off + sizeof(struct ecoff_symhdr);
678 1.8 jonathan stringtaboff = nextoff;
679 1.8 jonathan ecoff_strsize = ECOFF_ROUND(ecoffsymtab.stringsize,
680 1.31 christos (ECOFF32_SEGMENT_ALIGNMENT(ep)));
681 1.8 jonathan
682 1.8 jonathan
683 1.8 jonathan nextoff = stringtaboff + ecoff_strsize;
684 1.8 jonathan symtaboff = nextoff;
685 1.8 jonathan symtabsize = nsyms * sizeof(struct ecoff_extsym);
686 1.31 christos symtabsize = ECOFF_ROUND(symtabsize, ECOFF32_SEGMENT_ALIGNMENT(ep));
687 1.8 jonathan
688 1.8 jonathan /* Write out the symbol header ... */
689 1.9 lukem write_ecoff_symhdr(out, ep, &symhdr, nsyms, symtaboff,
690 1.9 lukem stringtaboff, ecoffsymtab.stringsize);
691 1.8 jonathan
692 1.8 jonathan /* Write out the string table... */
693 1.8 jonathan padding = ecoff_strsize - ecoffsymtab.stringsize;
694 1.9 lukem safewrite(out, ecoffsymtab.stringtab, ecoffsymtab.stringsize,
695 1.28 christos "string table: write");
696 1.8 jonathan if (padding)
697 1.28 christos pad16(out, padding, "string table: padding");
698 1.8 jonathan
699 1.8 jonathan
700 1.8 jonathan /* Write out the symbol table... */
701 1.9 lukem padding = symtabsize - (nsyms * sizeof(struct ecoff_extsym));
702 1.16 bouyer
703 1.16 bouyer for (i = 0; i < nsyms; i++) {
704 1.16 bouyer struct ecoff_extsym *es = &ecoffsymtab.ecoff_syms[i];
705 1.16 bouyer es->es_flags = bswap16(es->es_flags);
706 1.16 bouyer es->es_ifd = bswap16(es->es_ifd);
707 1.16 bouyer bswap32_region(&es->es_strindex,
708 1.16 bouyer sizeof(*es) - sizeof(es->es_flags) - sizeof(es->es_ifd));
709 1.16 bouyer }
710 1.9 lukem safewrite(out, ecoffsymtab.ecoff_syms,
711 1.8 jonathan nsyms * sizeof(struct ecoff_extsym),
712 1.28 christos "symbol table: write");
713 1.8 jonathan if (padding)
714 1.28 christos pad16(out, padding, "symbols: padding");
715 1.8 jonathan }
716 1.8 jonathan
717 1.8 jonathan
718 1.8 jonathan
719 1.8 jonathan /*
720 1.8 jonathan * In-memory translation of ELF symbosl to ECOFF.
721 1.8 jonathan */
722 1.28 christos static void
723 1.27 tsutsui translate_syms(struct elf_syms *elfp, struct ecoff_syms *ecoffp)
724 1.8 jonathan {
725 1.6 jonathan
726 1.9 lukem int i;
727 1.9 lukem char *oldstringbase;
728 1.9 lukem char *newstrings, *nsp;
729 1.9 lukem
730 1.9 lukem int nsyms, idx;
731 1.9 lukem
732 1.9 lukem nsyms = elfp->nsymbols;
733 1.9 lukem oldstringbase = elfp->stringtab;
734 1.9 lukem
735 1.9 lukem /* Allocate space for corresponding ECOFF symbols. */
736 1.10 perry memset(ecoffp, 0, sizeof(*ecoffp));
737 1.9 lukem
738 1.9 lukem ecoffp->nsymbols = 0;
739 1.9 lukem ecoffp->ecoff_syms = malloc(sizeof(struct ecoff_extsym) * nsyms);
740 1.9 lukem
741 1.9 lukem /* we are going to be no bigger than the ELF symbol table. */
742 1.9 lukem ecoffp->stringsize = elfp->stringsize;
743 1.9 lukem ecoffp->stringtab = malloc(elfp->stringsize);
744 1.9 lukem
745 1.9 lukem newstrings = (char *) ecoffp->stringtab;
746 1.9 lukem nsp = (char *) ecoffp->stringtab;
747 1.28 christos if (newstrings == NULL)
748 1.28 christos errx(1, "No memory for new string table");
749 1.9 lukem /* Copy and translate symbols... */
750 1.9 lukem idx = 0;
751 1.9 lukem for (i = 0; i < nsyms; i++) {
752 1.29 christos int binding;
753 1.9 lukem
754 1.13 drochner binding = ELF32_ST_BIND((elfp->elf_syms[i].st_info));
755 1.9 lukem
756 1.9 lukem /* skip strange symbols */
757 1.9 lukem if (binding == 0) {
758 1.9 lukem continue;
759 1.9 lukem }
760 1.9 lukem /* Copy the symbol into the new table */
761 1.9 lukem strcpy(nsp, oldstringbase + elfp->elf_syms[i].st_name);
762 1.9 lukem ecoffp->ecoff_syms[idx].es_strindex = nsp - newstrings;
763 1.9 lukem nsp += strlen(nsp) + 1;
764 1.9 lukem
765 1.9 lukem /* translate symbol types to ECOFF XXX */
766 1.9 lukem ecoffp->ecoff_syms[idx].es_type = 1;
767 1.9 lukem ecoffp->ecoff_syms[idx].es_class = 5;
768 1.9 lukem
769 1.9 lukem /* Symbol values in executables should be compatible. */
770 1.9 lukem ecoffp->ecoff_syms[idx].es_value = elfp->elf_syms[i].st_value;
771 1.9 lukem ecoffp->ecoff_syms[idx].es_symauxindex = 0xfffff;
772 1.8 jonathan
773 1.9 lukem idx++;
774 1.8 jonathan }
775 1.8 jonathan
776 1.9 lukem ecoffp->nsymbols = idx;
777 1.9 lukem ecoffp->stringsize = nsp - newstrings;
778 1.8 jonathan }
779 1.8 jonathan /*
780 1.8 jonathan * pad to a 16-byte boundary
781 1.8 jonathan */
782 1.28 christos static void
783 1.8 jonathan pad16(int fd, int size, const char *msg)
784 1.8 jonathan {
785 1.27 tsutsui
786 1.9 lukem safewrite(fd, "\0\0\0\0\0\0\0\0\0\0\0\0\0\0", size, msg);
787 1.16 bouyer }
788 1.16 bouyer
789 1.16 bouyer /* swap a 32bit region */
790 1.28 christos static void
791 1.22 simonb bswap32_region(int32_t* p, int len)
792 1.16 bouyer {
793 1.23 tsutsui size_t i;
794 1.16 bouyer
795 1.22 simonb for (i = 0; i < len / sizeof(int32_t); i++, p++)
796 1.16 bouyer *p = bswap32(*p);
797 1.1 jonathan }
798