Statistics
| Branch: | Revision:

root / linux-user / flatload.c @ ac46eb8b

History | View | Annotate | Download (25.5 kB)

1
/****************************************************************************/
2
/*
3
 *  QEMU bFLT binary loader.  Based on linux/fs/binfmt_flat.c
4
 *
5
 *  This program is free software; you can redistribute it and/or modify
6
 *  it under the terms of the GNU General Public License as published by
7
 *  the Free Software Foundation; either version 2 of the License, or
8
 *  (at your option) any later version.
9
 *
10
 *  This program is distributed in the hope that it will be useful,
11
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
12
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13
 *  GNU General Public License for more details.
14
 *
15
 *  You should have received a copy of the GNU General Public License
16
 *  along with this program; if not, see <http://www.gnu.org/licenses/>.
17
 *
18
 *      Copyright (C) 2006 CodeSourcery.
19
 *        Copyright (C) 2000-2003 David McCullough <davidm@snapgear.com>
20
 *        Copyright (C) 2002 Greg Ungerer <gerg@snapgear.com>
21
 *        Copyright (C) 2002 SnapGear, by Paul Dale <pauli@snapgear.com>
22
 *        Copyright (C) 2000, 2001 Lineo, by David McCullough <davidm@lineo.com>
23
 *  based heavily on:
24
 *
25
 *  linux/fs/binfmt_aout.c:
26
 *      Copyright (C) 1991, 1992, 1996  Linus Torvalds
27
 *  linux/fs/binfmt_flat.c for 2.0 kernel
28
 *            Copyright (C) 1998  Kenneth Albanowski <kjahds@kjahds.com>
29
 *        JAN/99 -- coded full program relocation (gerg@snapgear.com)
30
 */
31

    
32
/* ??? ZFLAT and shared library support is currently disabled.  */
33

    
34
/****************************************************************************/
35

    
36
#include <stdio.h>
37
#include <stdlib.h>
38
#include <errno.h>
39
#include <sys/mman.h>
40
#include <unistd.h>
41

    
42
#include "qemu.h"
43
#include "flat.h"
44

    
45
//#define DEBUG
46

    
47
#ifdef DEBUG
48
#define        DBG_FLT(...)        printf(__VA_ARGS__)
49
#else
50
#define        DBG_FLT(...)
51
#endif
52

    
53
#define flat_reloc_valid(reloc, size)             ((reloc) <= (size))
54
#define flat_old_ram_flag(flag)                   (flag)
55
#ifdef TARGET_WORDS_BIGENDIAN
56
#define flat_get_relocate_addr(relval)            (relval)
57
#else
58
#define flat_get_relocate_addr(relval)            bswap32(relval)
59
#endif
60

    
61
#define RELOC_FAILED 0xff00ff01                /* Relocation incorrect somewhere */
62
#define UNLOADED_LIB 0x7ff000ff                /* Placeholder for unused library */
63

    
64
struct lib_info {
65
    abi_ulong start_code;       /* Start of text segment */
66
    abi_ulong start_data;       /* Start of data segment */
67
    abi_ulong end_data;         /* Start of bss section */
68
    abi_ulong start_brk;        /* End of data segment */
69
    abi_ulong text_len;                /* Length of text segment */
70
    abi_ulong entry;                /* Start address for this module */
71
    abi_ulong build_date;       /* When this one was compiled */
72
    short loaded;                /* Has this library been loaded? */
73
};
74

    
75
#ifdef CONFIG_BINFMT_SHARED_FLAT
76
static int load_flat_shared_library(int id, struct lib_info *p);
77
#endif
78

    
79
struct linux_binprm;
80

    
81
#define ntohl(x) be32_to_cpu(x)
82

    
83
/****************************************************************************/
84
/*
85
 * create_flat_tables() parses the env- and arg-strings in new user
86
 * memory and creates the pointer tables from them, and puts their
87
 * addresses on the "stack", returning the new stack pointer value.
88
 */
89

    
90
/* Push a block of strings onto the guest stack.  */
91
static abi_ulong copy_strings(abi_ulong p, int n, char **s)
92
{
93
    int len;
94

    
95
    while (n-- > 0) {
96
        len = strlen(s[n]) + 1;
97
        p -= len;
98
        memcpy_to_target(p, s[n], len);
99
    }
100

    
101
    return p;
102
}
103

    
104
static int target_pread(int fd, abi_ulong ptr, abi_ulong len,
105
                        abi_ulong offset)
106
{
107
    void *buf;
108
    int ret;
109

    
110
    buf = lock_user(VERIFY_WRITE, ptr, len, 0);
111
    ret = pread(fd, buf, len, offset);
112
    unlock_user(buf, ptr, len);
113
    return ret;
114
}
115
/****************************************************************************/
116

    
117
#ifdef CONFIG_BINFMT_ZFLAT
118

    
119
#include <linux/zlib.h>
120

    
121
#define LBUFSIZE        4000
122

    
123
/* gzip flag byte */
124
#define ASCII_FLAG   0x01 /* bit 0 set: file probably ASCII text */
125
#define CONTINUATION 0x02 /* bit 1 set: continuation of multi-part gzip file */
126
#define EXTRA_FIELD  0x04 /* bit 2 set: extra field present */
127
#define ORIG_NAME    0x08 /* bit 3 set: original file name present */
128
#define COMMENT      0x10 /* bit 4 set: file comment present */
129
#define ENCRYPTED    0x20 /* bit 5 set: file is encrypted */
130
#define RESERVED     0xC0 /* bit 6,7:   reserved */
131

    
132
static int decompress_exec(
133
        struct linux_binprm *bprm,
134
        unsigned long offset,
135
        char *dst,
136
        long len,
137
        int fd)
138
{
139
        unsigned char *buf;
140
        z_stream strm;
141
        loff_t fpos;
142
        int ret, retval;
143

    
144
        DBG_FLT("decompress_exec(offset=%x,buf=%x,len=%x)\n",(int)offset, (int)dst, (int)len);
145

    
146
        memset(&strm, 0, sizeof(strm));
147
        strm.workspace = kmalloc(zlib_inflate_workspacesize(), GFP_KERNEL);
148
        if (strm.workspace == NULL) {
149
                DBG_FLT("binfmt_flat: no memory for decompress workspace\n");
150
                return -ENOMEM;
151
        }
152
        buf = kmalloc(LBUFSIZE, GFP_KERNEL);
153
        if (buf == NULL) {
154
                DBG_FLT("binfmt_flat: no memory for read buffer\n");
155
                retval = -ENOMEM;
156
                goto out_free;
157
        }
158

    
159
        /* Read in first chunk of data and parse gzip header. */
160
        fpos = offset;
161
        ret = bprm->file->f_op->read(bprm->file, buf, LBUFSIZE, &fpos);
162

    
163
        strm.next_in = buf;
164
        strm.avail_in = ret;
165
        strm.total_in = 0;
166

    
167
        retval = -ENOEXEC;
168

    
169
        /* Check minimum size -- gzip header */
170
        if (ret < 10) {
171
                DBG_FLT("binfmt_flat: file too small?\n");
172
                goto out_free_buf;
173
        }
174

    
175
        /* Check gzip magic number */
176
        if ((buf[0] != 037) || ((buf[1] != 0213) && (buf[1] != 0236))) {
177
                DBG_FLT("binfmt_flat: unknown compression magic?\n");
178
                goto out_free_buf;
179
        }
180

    
181
        /* Check gzip method */
182
        if (buf[2] != 8) {
183
                DBG_FLT("binfmt_flat: unknown compression method?\n");
184
                goto out_free_buf;
185
        }
186
        /* Check gzip flags */
187
        if ((buf[3] & ENCRYPTED) || (buf[3] & CONTINUATION) ||
188
            (buf[3] & RESERVED)) {
189
                DBG_FLT("binfmt_flat: unknown flags?\n");
190
                goto out_free_buf;
191
        }
192

    
193
        ret = 10;
194
        if (buf[3] & EXTRA_FIELD) {
195
                ret += 2 + buf[10] + (buf[11] << 8);
196
                if (unlikely(LBUFSIZE == ret)) {
197
                        DBG_FLT("binfmt_flat: buffer overflow (EXTRA)?\n");
198
                        goto out_free_buf;
199
                }
200
        }
201
        if (buf[3] & ORIG_NAME) {
202
                for (; ret < LBUFSIZE && (buf[ret] != 0); ret++)
203
                        ;
204
                if (unlikely(LBUFSIZE == ret)) {
205
                        DBG_FLT("binfmt_flat: buffer overflow (ORIG_NAME)?\n");
206
                        goto out_free_buf;
207
                }
208
        }
209
        if (buf[3] & COMMENT) {
210
                for (;  ret < LBUFSIZE && (buf[ret] != 0); ret++)
211
                        ;
212
                if (unlikely(LBUFSIZE == ret)) {
213
                        DBG_FLT("binfmt_flat: buffer overflow (COMMENT)?\n");
214
                        goto out_free_buf;
215
                }
216
        }
217

    
218
        strm.next_in += ret;
219
        strm.avail_in -= ret;
220

    
221
        strm.next_out = dst;
222
        strm.avail_out = len;
223
        strm.total_out = 0;
224

    
225
        if (zlib_inflateInit2(&strm, -MAX_WBITS) != Z_OK) {
226
                DBG_FLT("binfmt_flat: zlib init failed?\n");
227
                goto out_free_buf;
228
        }
229

    
230
        while ((ret = zlib_inflate(&strm, Z_NO_FLUSH)) == Z_OK) {
231
                ret = bprm->file->f_op->read(bprm->file, buf, LBUFSIZE, &fpos);
232
                if (ret <= 0)
233
                        break;
234
                if (ret >= (unsigned long) -4096)
235
                        break;
236
                len -= ret;
237

    
238
                strm.next_in = buf;
239
                strm.avail_in = ret;
240
                strm.total_in = 0;
241
        }
242

    
243
        if (ret < 0) {
244
                DBG_FLT("binfmt_flat: decompression failed (%d), %s\n",
245
                        ret, strm.msg);
246
                goto out_zlib;
247
        }
248

    
249
        retval = 0;
250
out_zlib:
251
        zlib_inflateEnd(&strm);
252
out_free_buf:
253
        kfree(buf);
254
out_free:
255
        kfree(strm.workspace);
256
out:
257
        return retval;
258
}
259

    
260
#endif /* CONFIG_BINFMT_ZFLAT */
261

    
262
/****************************************************************************/
263

    
264
static abi_ulong
265
calc_reloc(abi_ulong r, struct lib_info *p, int curid, int internalp)
266
{
267
    abi_ulong addr;
268
    int id;
269
    abi_ulong start_brk;
270
    abi_ulong start_data;
271
    abi_ulong text_len;
272
    abi_ulong start_code;
273

    
274
#ifdef CONFIG_BINFMT_SHARED_FLAT
275
#error needs checking
276
    if (r == 0)
277
        id = curid;        /* Relocs of 0 are always self referring */
278
    else {
279
        id = (r >> 24) & 0xff;        /* Find ID for this reloc */
280
        r &= 0x00ffffff;        /* Trim ID off here */
281
    }
282
    if (id >= MAX_SHARED_LIBS) {
283
        fprintf(stderr, "BINFMT_FLAT: reference 0x%x to shared library %d\n",
284
                (unsigned) r, id);
285
        goto failed;
286
    }
287
    if (curid != id) {
288
        if (internalp) {
289
            fprintf(stderr, "BINFMT_FLAT: reloc address 0x%x not "
290
                    "in same module (%d != %d)\n",
291
                    (unsigned) r, curid, id);
292
            goto failed;
293
        } else if ( ! p[id].loaded &&
294
                    load_flat_shared_library(id, p) > (unsigned long) -4096) {
295
            fprintf(stderr, "BINFMT_FLAT: failed to load library %d\n", id);
296
            goto failed;
297
        }
298
        /* Check versioning information (i.e. time stamps) */
299
        if (p[id].build_date && p[curid].build_date
300
            && p[curid].build_date < p[id].build_date) {
301
            fprintf(stderr, "BINFMT_FLAT: library %d is younger than %d\n",
302
                    id, curid);
303
            goto failed;
304
        }
305
    }
306
#else
307
    id = 0;
308
#endif
309

    
310
    start_brk = p[id].start_brk;
311
    start_data = p[id].start_data;
312
    start_code = p[id].start_code;
313
    text_len = p[id].text_len;
314

    
315
    if (!flat_reloc_valid(r, start_brk - start_data + text_len)) {
316
        fprintf(stderr, "BINFMT_FLAT: reloc outside program 0x%x "
317
                "(0 - 0x%x/0x%x)\n",
318
               (int) r,(int)(start_brk-start_code),(int)text_len);
319
        goto failed;
320
    }
321

    
322
    if (r < text_len)                        /* In text segment */
323
        addr = r + start_code;
324
    else                                        /* In data segment */
325
        addr = r - text_len + start_data;
326

    
327
    /* Range checked already above so doing the range tests is redundant...*/
328
    return(addr);
329

    
330
failed:
331
    abort();
332
    return RELOC_FAILED;
333
}
334

    
335
/****************************************************************************/
336

    
337
/* ??? This does not handle endianness correctly.  */
338
static void old_reloc(struct lib_info *libinfo, uint32_t rl)
339
{
340
#ifdef DEBUG
341
        const char *segment[] = { "TEXT", "DATA", "BSS", "*UNKNOWN*" };
342
#endif
343
        uint32_t *ptr;
344
        uint32_t offset;
345
        int reloc_type;
346

    
347
        offset = rl & 0x3fffffff;
348
        reloc_type = rl >> 30;
349
        /* ??? How to handle this?  */
350
#if defined(CONFIG_COLDFIRE)
351
        ptr = (uint32_t *) ((unsigned long) libinfo->start_code + offset);
352
#else
353
        ptr = (uint32_t *) ((unsigned long) libinfo->start_data + offset);
354
#endif
355

    
356
#ifdef DEBUG
357
        fprintf(stderr, "Relocation of variable at DATASEG+%x "
358
                "(address %p, currently %x) into segment %s\n",
359
                offset, ptr, (int)*ptr, segment[reloc_type]);
360
#endif
361

    
362
        switch (reloc_type) {
363
        case OLD_FLAT_RELOC_TYPE_TEXT:
364
                *ptr += libinfo->start_code;
365
                break;
366
        case OLD_FLAT_RELOC_TYPE_DATA:
367
                *ptr += libinfo->start_data;
368
                break;
369
        case OLD_FLAT_RELOC_TYPE_BSS:
370
                *ptr += libinfo->end_data;
371
                break;
372
        default:
373
                fprintf(stderr, "BINFMT_FLAT: Unknown relocation type=%x\n",
374
                        reloc_type);
375
                break;
376
        }
377
        DBG_FLT("Relocation became %x\n", (int)*ptr);
378
}
379

    
380
/****************************************************************************/
381

    
382
static int load_flat_file(struct linux_binprm * bprm,
383
                struct lib_info *libinfo, int id, abi_ulong *extra_stack)
384
{
385
    struct flat_hdr * hdr;
386
    abi_ulong textpos = 0, datapos = 0, result;
387
    abi_ulong realdatastart = 0;
388
    abi_ulong text_len, data_len, bss_len, stack_len, flags;
389
    abi_ulong memp = 0; /* for finding the brk area */
390
    abi_ulong extra;
391
    abi_ulong reloc = 0, rp;
392
    int i, rev, relocs = 0;
393
    abi_ulong fpos;
394
    abi_ulong start_code, end_code;
395
    abi_ulong indx_len;
396

    
397
    hdr = ((struct flat_hdr *) bprm->buf);                /* exec-header */
398

    
399
    text_len  = ntohl(hdr->data_start);
400
    data_len  = ntohl(hdr->data_end) - ntohl(hdr->data_start);
401
    bss_len   = ntohl(hdr->bss_end) - ntohl(hdr->data_end);
402
    stack_len = ntohl(hdr->stack_size);
403
    if (extra_stack) {
404
        stack_len += *extra_stack;
405
        *extra_stack = stack_len;
406
    }
407
    relocs    = ntohl(hdr->reloc_count);
408
    flags     = ntohl(hdr->flags);
409
    rev       = ntohl(hdr->rev);
410

    
411
    DBG_FLT("BINFMT_FLAT: Loading file: %s\n", bprm->filename);
412

    
413
    if (rev != FLAT_VERSION && rev != OLD_FLAT_VERSION) {
414
        fprintf(stderr, "BINFMT_FLAT: bad magic/rev (0x%x, need 0x%x)\n",
415
                rev, (int) FLAT_VERSION);
416
        return -ENOEXEC;
417
    }
418

    
419
    /* Don't allow old format executables to use shared libraries */
420
    if (rev == OLD_FLAT_VERSION && id != 0) {
421
        fprintf(stderr, "BINFMT_FLAT: shared libraries are not available\n");
422
        return -ENOEXEC;
423
    }
424

    
425
    /*
426
     * fix up the flags for the older format,  there were all kinds
427
     * of endian hacks,  this only works for the simple cases
428
     */
429
    if (rev == OLD_FLAT_VERSION && flat_old_ram_flag(flags))
430
        flags = FLAT_FLAG_RAM;
431

    
432
#ifndef CONFIG_BINFMT_ZFLAT
433
    if (flags & (FLAT_FLAG_GZIP|FLAT_FLAG_GZDATA)) {
434
        fprintf(stderr, "Support for ZFLAT executables is not enabled\n");
435
        return -ENOEXEC;
436
    }
437
#endif
438

    
439
    /*
440
     * calculate the extra space we need to map in
441
     */
442
    extra = relocs * sizeof(abi_ulong);
443
    if (extra < bss_len + stack_len)
444
        extra = bss_len + stack_len;
445

    
446
    /* Add space for library base pointers.  Make sure this does not
447
       misalign the  doesn't misalign the data segment.  */
448
    indx_len = MAX_SHARED_LIBS * sizeof(abi_ulong);
449
    indx_len = (indx_len + 15) & ~(abi_ulong)15;
450

    
451
    /*
452
     * there are a couple of cases here,  the separate code/data
453
     * case,  and then the fully copied to RAM case which lumps
454
     * it all together.
455
     */
456
    if ((flags & (FLAT_FLAG_RAM|FLAT_FLAG_GZIP)) == 0) {
457
        /*
458
         * this should give us a ROM ptr,  but if it doesn't we don't
459
         * really care
460
         */
461
        DBG_FLT("BINFMT_FLAT: ROM mapping of file (we hope)\n");
462

    
463
        textpos = target_mmap(0, text_len, PROT_READ|PROT_EXEC,
464
                              MAP_PRIVATE, bprm->fd, 0);
465
        if (textpos == -1) {
466
            fprintf(stderr, "Unable to mmap process text\n");
467
            return -1;
468
        }
469

    
470
        realdatastart = target_mmap(0, data_len + extra + indx_len,
471
                                    PROT_READ|PROT_WRITE|PROT_EXEC,
472
                                    MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
473

    
474
        if (realdatastart == -1) {
475
            fprintf(stderr, "Unable to allocate RAM for process data\n");
476
            return realdatastart;
477
        }
478
        datapos = realdatastart + indx_len;
479

    
480
        DBG_FLT("BINFMT_FLAT: Allocated data+bss+stack (%d bytes): %x\n",
481
                        (int)(data_len + bss_len + stack_len), (int)datapos);
482

    
483
        fpos = ntohl(hdr->data_start);
484
#ifdef CONFIG_BINFMT_ZFLAT
485
        if (flags & FLAT_FLAG_GZDATA) {
486
            result = decompress_exec(bprm, fpos, (char *) datapos,
487
                                     data_len + (relocs * sizeof(abi_ulong)))
488
        } else
489
#endif
490
        {
491
            result = target_pread(bprm->fd, datapos,
492
                                  data_len + (relocs * sizeof(abi_ulong)),
493
                                  fpos);
494
        }
495
        if (result < 0) {
496
            fprintf(stderr, "Unable to read data+bss\n");
497
            return result;
498
        }
499

    
500
        reloc = datapos + (ntohl(hdr->reloc_start) - text_len);
501
        memp = realdatastart;
502

    
503
    } else {
504

    
505
        textpos = target_mmap(0, text_len + data_len + extra + indx_len,
506
                              PROT_READ | PROT_EXEC | PROT_WRITE,
507
                              MAP_PRIVATE | MAP_ANONYMOUS, -1, 0);
508
        if (textpos == -1 ) {
509
            fprintf(stderr, "Unable to allocate RAM for process text/data\n");
510
            return -1;
511
        }
512

    
513
        realdatastart = textpos + ntohl(hdr->data_start);
514
        datapos = realdatastart + indx_len;
515
        reloc = (textpos + ntohl(hdr->reloc_start) + indx_len);
516
        memp = textpos;
517

    
518
#ifdef CONFIG_BINFMT_ZFLAT
519
#error code needs checking
520
        /*
521
         * load it all in and treat it like a RAM load from now on
522
         */
523
        if (flags & FLAT_FLAG_GZIP) {
524
                result = decompress_exec(bprm, sizeof (struct flat_hdr),
525
                                 (((char *) textpos) + sizeof (struct flat_hdr)),
526
                                 (text_len + data_len + (relocs * sizeof(unsigned long))
527
                                          - sizeof (struct flat_hdr)),
528
                                 0);
529
                memmove((void *) datapos, (void *) realdatastart,
530
                                data_len + (relocs * sizeof(unsigned long)));
531
        } else if (flags & FLAT_FLAG_GZDATA) {
532
                fpos = 0;
533
                result = bprm->file->f_op->read(bprm->file,
534
                                (char *) textpos, text_len, &fpos);
535
                if (result < (unsigned long) -4096)
536
                        result = decompress_exec(bprm, text_len, (char *) datapos,
537
                                         data_len + (relocs * sizeof(unsigned long)), 0);
538
        }
539
        else
540
#endif
541
        {
542
            result = target_pread(bprm->fd, textpos,
543
                                  text_len, 0);
544
            if (result >= 0) {
545
                result = target_pread(bprm->fd, datapos,
546
                    data_len + (relocs * sizeof(abi_ulong)),
547
                    ntohl(hdr->data_start));
548
            }
549
        }
550
        if (result < 0) {
551
            fprintf(stderr, "Unable to read code+data+bss\n");
552
            return result;
553
        }
554
    }
555

    
556
    DBG_FLT("Mapping is 0x%x, Entry point is 0x%x, data_start is 0x%x\n",
557
            (int)textpos, 0x00ffffff&ntohl(hdr->entry),
558
            ntohl(hdr->data_start));
559

    
560
    /* The main program needs a little extra setup in the task structure */
561
    start_code = textpos + sizeof (struct flat_hdr);
562
    end_code = textpos + text_len;
563

    
564
    DBG_FLT("%s %s: TEXT=%x-%x DATA=%x-%x BSS=%x-%x\n",
565
            id ? "Lib" : "Load", bprm->filename,
566
            (int) start_code, (int) end_code,
567
            (int) datapos,
568
            (int) (datapos + data_len),
569
            (int) (datapos + data_len),
570
            (int) (((datapos + data_len + bss_len) + 3) & ~3));
571

    
572
    text_len -= sizeof(struct flat_hdr); /* the real code len */
573

    
574
    /* Store the current module values into the global library structure */
575
    libinfo[id].start_code = start_code;
576
    libinfo[id].start_data = datapos;
577
    libinfo[id].end_data = datapos + data_len;
578
    libinfo[id].start_brk = datapos + data_len + bss_len;
579
    libinfo[id].text_len = text_len;
580
    libinfo[id].loaded = 1;
581
    libinfo[id].entry = (0x00ffffff & ntohl(hdr->entry)) + textpos;
582
    libinfo[id].build_date = ntohl(hdr->build_date);
583

    
584
    /*
585
     * We just load the allocations into some temporary memory to
586
     * help simplify all this mumbo jumbo
587
     *
588
     * We've got two different sections of relocation entries.
589
     * The first is the GOT which resides at the begining of the data segment
590
     * and is terminated with a -1.  This one can be relocated in place.
591
     * The second is the extra relocation entries tacked after the image's
592
     * data segment. These require a little more processing as the entry is
593
     * really an offset into the image which contains an offset into the
594
     * image.
595
     */
596
    if (flags & FLAT_FLAG_GOTPIC) {
597
        rp = datapos;
598
        while (1) {
599
            abi_ulong addr;
600
            if (get_user_ual(addr, rp))
601
                return -EFAULT;
602
            if (addr == -1)
603
                break;
604
            if (addr) {
605
                addr = calc_reloc(addr, libinfo, id, 0);
606
                if (addr == RELOC_FAILED)
607
                    return -ENOEXEC;
608
                if (put_user_ual(addr, rp))
609
                    return -EFAULT;
610
            }
611
            rp += sizeof(abi_ulong);
612
        }
613
    }
614

    
615
    /*
616
     * Now run through the relocation entries.
617
     * We've got to be careful here as C++ produces relocatable zero
618
     * entries in the constructor and destructor tables which are then
619
     * tested for being not zero (which will always occur unless we're
620
     * based from address zero).  This causes an endless loop as __start
621
     * is at zero.  The solution used is to not relocate zero addresses.
622
     * This has the negative side effect of not allowing a global data
623
     * reference to be statically initialised to _stext (I've moved
624
     * __start to address 4 so that is okay).
625
     */
626
    if (rev > OLD_FLAT_VERSION) {
627
        for (i = 0; i < relocs; i++) {
628
            abi_ulong addr, relval;
629

    
630
            /* Get the address of the pointer to be
631
               relocated (of course, the address has to be
632
               relocated first).  */
633
            if (get_user_ual(relval, reloc + i * sizeof(abi_ulong)))
634
                return -EFAULT;
635
            addr = flat_get_relocate_addr(relval);
636
            rp = calc_reloc(addr, libinfo, id, 1);
637
            if (rp == RELOC_FAILED)
638
                return -ENOEXEC;
639

    
640
            /* Get the pointer's value.  */
641
            if (get_user_ual(addr, rp))
642
                return -EFAULT;
643
            if (addr != 0) {
644
                /*
645
                 * Do the relocation.  PIC relocs in the data section are
646
                 * already in target order
647
                 */
648

    
649
#ifndef TARGET_WORDS_BIGENDIAN
650
                if ((flags & FLAT_FLAG_GOTPIC) == 0)
651
                    addr = bswap32(addr);
652
#endif
653
                addr = calc_reloc(addr, libinfo, id, 0);
654
                if (addr == RELOC_FAILED)
655
                    return -ENOEXEC;
656

    
657
                /* Write back the relocated pointer.  */
658
                if (put_user_ual(addr, rp))
659
                    return -EFAULT;
660
            }
661
        }
662
    } else {
663
        for (i = 0; i < relocs; i++) {
664
            abi_ulong relval;
665
            if (get_user_ual(relval, reloc + i * sizeof(abi_ulong)))
666
                return -EFAULT;
667
            old_reloc(&libinfo[0], relval);
668
        }
669
    }
670

    
671
    /* zero the BSS.  */
672
    memset((void *)((unsigned long)datapos + data_len), 0, bss_len);
673

    
674
    return 0;
675
}
676

    
677

    
678
/****************************************************************************/
679
#ifdef CONFIG_BINFMT_SHARED_FLAT
680

    
681
/*
682
 * Load a shared library into memory.  The library gets its own data
683
 * segment (including bss) but not argv/argc/environ.
684
 */
685

    
686
static int load_flat_shared_library(int id, struct lib_info *libs)
687
{
688
        struct linux_binprm bprm;
689
        int res;
690
        char buf[16];
691

    
692
        /* Create the file name */
693
        sprintf(buf, "/lib/lib%d.so", id);
694

    
695
        /* Open the file up */
696
        bprm.filename = buf;
697
        bprm.file = open_exec(bprm.filename);
698
        res = PTR_ERR(bprm.file);
699
        if (IS_ERR(bprm.file))
700
                return res;
701

    
702
        res = prepare_binprm(&bprm);
703

    
704
        if (res <= (unsigned long)-4096)
705
                res = load_flat_file(&bprm, libs, id, NULL);
706
        if (bprm.file) {
707
                allow_write_access(bprm.file);
708
                fput(bprm.file);
709
                bprm.file = NULL;
710
        }
711
        return(res);
712
}
713

    
714
#endif /* CONFIG_BINFMT_SHARED_FLAT */
715

    
716
int load_flt_binary(struct linux_binprm * bprm, struct target_pt_regs * regs,
717
                    struct image_info * info)
718
{
719
    struct lib_info libinfo[MAX_SHARED_LIBS];
720
    abi_ulong p = bprm->p;
721
    abi_ulong stack_len;
722
    abi_ulong start_addr;
723
    abi_ulong sp;
724
    int res;
725
    int i, j;
726

    
727
    memset(libinfo, 0, sizeof(libinfo));
728
    /*
729
     * We have to add the size of our arguments to our stack size
730
     * otherwise it's too easy for users to create stack overflows
731
     * by passing in a huge argument list.  And yes,  we have to be
732
     * pedantic and include space for the argv/envp array as it may have
733
     * a lot of entries.
734
     */
735
#define TOP_OF_ARGS (TARGET_PAGE_SIZE * MAX_ARG_PAGES - sizeof(void *))
736
    stack_len = TOP_OF_ARGS - bprm->p;             /* the strings */
737
    stack_len += (bprm->argc + 1) * 4; /* the argv array */
738
    stack_len += (bprm->envc + 1) * 4; /* the envp array */
739

    
740

    
741
    res = load_flat_file(bprm, libinfo, 0, &stack_len);
742
    if (res > (unsigned long)-4096)
743
            return res;
744

    
745
    /* Update data segment pointers for all libraries */
746
    for (i=0; i<MAX_SHARED_LIBS; i++) {
747
        if (libinfo[i].loaded) {
748
            abi_ulong p;
749
            p = libinfo[i].start_data;
750
            for (j=0; j<MAX_SHARED_LIBS; j++) {
751
                p -= 4;
752
                /* FIXME - handle put_user() failures */
753
                if (put_user_ual(libinfo[j].loaded
754
                                 ? libinfo[j].start_data
755
                                 : UNLOADED_LIB,
756
                                 p))
757
                    return -EFAULT;
758
            }
759
        }
760
    }
761

    
762
    p = ((libinfo[0].start_brk + stack_len + 3) & ~3) - 4;
763
    DBG_FLT("p=%x\n", (int)p);
764

    
765
    /* Copy argv/envp.  */
766
    p = copy_strings(p, bprm->envc, bprm->envp);
767
    p = copy_strings(p, bprm->argc, bprm->argv);
768
    /* Align stack.  */
769
    sp = p & ~(abi_ulong)(sizeof(abi_ulong) - 1);
770
    /* Enforce final stack alignment of 16 bytes.  This is sufficient
771
       for all current targets, and excess alignment is harmless.  */
772
    stack_len = bprm->envc + bprm->argc + 2;
773
    stack_len += 3;        /* argc, arvg, argp */
774
    stack_len *= sizeof(abi_ulong);
775
    if ((sp + stack_len) & 15)
776
        sp -= 16 - ((sp + stack_len) & 15);
777
    sp = loader_build_argptr(bprm->envc, bprm->argc, sp, p, 1);
778

    
779
    /* Fake some return addresses to ensure the call chain will
780
     * initialise library in order for us.  We are required to call
781
     * lib 1 first, then 2, ... and finally the main program (id 0).
782
     */
783
    start_addr = libinfo[0].entry;
784

    
785
#ifdef CONFIG_BINFMT_SHARED_FLAT
786
#error here
787
    for (i = MAX_SHARED_LIBS-1; i>0; i--) {
788
            if (libinfo[i].loaded) {
789
                    /* Push previos first to call address */
790
                    --sp;
791
                    if (put_user_ual(start_addr, sp))
792
                        return -EFAULT;
793
                    start_addr = libinfo[i].entry;
794
            }
795
    }
796
#endif
797

    
798
    /* Stash our initial stack pointer into the mm structure */
799
    info->start_code = libinfo[0].start_code;
800
    info->end_code = libinfo[0].start_code = libinfo[0].text_len;
801
    info->start_data = libinfo[0].start_data;
802
    info->end_data = libinfo[0].end_data;
803
    info->start_brk = libinfo[0].start_brk;
804
    info->start_stack = sp;
805
    info->stack_limit = libinfo[0].start_brk;
806
    info->entry = start_addr;
807
    info->code_offset = info->start_code;
808
    info->data_offset = info->start_data - libinfo[0].text_len;
809

    
810
    DBG_FLT("start_thread(entry=0x%x, start_stack=0x%x)\n",
811
            (int)info->entry, (int)info->start_stack);
812

    
813
    return 0;
814
}