Code cleanup for cygw32
[bpt/emacs.git] / src / unexw32.c
1 /* unexec for GNU Emacs on Windows NT.
2 Copyright (C) 1994, 2001-2012 Free Software Foundation, Inc.
3
4 This file is part of GNU Emacs.
5
6 GNU Emacs is free software: you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation, either version 3 of the License, or
9 (at your option) any later version.
10
11 GNU Emacs is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with GNU Emacs. If not, see <http://www.gnu.org/licenses/>. */
18
19 /*
20 Geoff Voelker (voelker@cs.washington.edu) 8-12-94
21 */
22
23 #include <config.h>
24 #include "unexec.h"
25 #include "w32common.h"
26
27 #include <stdio.h>
28 #include <fcntl.h>
29 #include <time.h>
30 #include <windows.h>
31
32 /* Include relevant definitions from IMAGEHLP.H, which can be found
33 in \\win32sdk\mstools\samples\image\include\imagehlp.h. */
34
35 PIMAGE_NT_HEADERS
36 (__stdcall * pfnCheckSumMappedFile) (LPVOID BaseAddress,
37 DWORD FileLength,
38 LPDWORD HeaderSum,
39 LPDWORD CheckSum);
40
41 extern BOOL ctrl_c_handler (unsigned long type);
42
43 extern char my_begdata[];
44 extern char my_edata[];
45 extern char my_begbss[];
46 extern char my_endbss[];
47 extern char *my_begbss_static;
48 extern char *my_endbss_static;
49
50 #include "w32heap.h"
51
52 #undef min
53 #undef max
54 #define min(x, y) (((x) < (y)) ? (x) : (y))
55 #define max(x, y) (((x) > (y)) ? (x) : (y))
56
57 /* Basically, our "initialized" flag. */
58 BOOL using_dynamic_heap = FALSE;
59
60 int open_input_file (file_data *p_file, char *name);
61 int open_output_file (file_data *p_file, char *name, unsigned long size);
62 void close_file_data (file_data *p_file);
63
64 void get_section_info (file_data *p_file);
65 void copy_executable_and_dump_data (file_data *, file_data *);
66 void dump_bss_and_heap (file_data *p_infile, file_data *p_outfile);
67
68 /* Cached info about the .data section in the executable. */
69 PIMAGE_SECTION_HEADER data_section;
70 PCHAR data_start = 0;
71 DWORD_PTR data_size = 0;
72
73 /* Cached info about the .bss section in the executable. */
74 PIMAGE_SECTION_HEADER bss_section;
75 PCHAR bss_start = 0;
76 DWORD_PTR bss_size = 0;
77 DWORD_PTR extra_bss_size = 0;
78 /* bss data that is static might be discontiguous from non-static. */
79 PIMAGE_SECTION_HEADER bss_section_static;
80 PCHAR bss_start_static = 0;
81 DWORD_PTR bss_size_static = 0;
82 DWORD_PTR extra_bss_size_static = 0;
83
84 PIMAGE_SECTION_HEADER heap_section;
85
86 #ifdef HAVE_NTGUI
87 extern HINSTANCE hinst;
88 HINSTANCE hprevinst = NULL;
89 LPSTR lpCmdLine = "";
90 int nCmdShow = 0;
91 #endif /* HAVE_NTGUI */
92
93 /* Startup code for running on NT. When we are running as the dumped
94 version, we need to bootstrap our heap and .bss section into our
95 address space before we can actually hand off control to the startup
96 code supplied by NT (primarily because that code relies upon malloc ()). */
97 void
98 _start (void)
99 {
100 extern void mainCRTStartup (void);
101
102 #if 1
103 /* Give us a way to debug problems with crashes on startup when
104 running under the MSVC profiler. */
105 if (GetEnvironmentVariable ("EMACS_DEBUG", NULL, 0) > 0)
106 DebugBreak ();
107 #endif
108
109 /* Cache system info, e.g., the NT page size. */
110 cache_system_info ();
111
112 /* Grab our malloc arena space now, before CRT starts up. */
113 init_heap ();
114
115 /* This prevents ctrl-c's in shells running while we're suspended from
116 having us exit. */
117 SetConsoleCtrlHandler ((PHANDLER_ROUTINE) ctrl_c_handler, TRUE);
118
119 /* Prevent Emacs from being locked up (eg. in batch mode) when
120 accessing devices that aren't mounted (eg. removable media drives). */
121 SetErrorMode (SEM_FAILCRITICALERRORS);
122
123 /* Invoke the NT CRT startup routine now that our housecleaning
124 is finished. */
125 #ifdef HAVE_NTGUI
126 /* determine WinMain args like crt0.c does */
127 hinst = GetModuleHandle (NULL);
128 lpCmdLine = GetCommandLine ();
129 nCmdShow = SW_SHOWDEFAULT;
130 #endif
131 mainCRTStartup ();
132 }
133
134
135 /* File handling. */
136
137 int
138 open_input_file (file_data *p_file, char *filename)
139 {
140 HANDLE file;
141 HANDLE file_mapping;
142 void *file_base;
143 unsigned long size, upper_size;
144
145 file = CreateFile (filename, GENERIC_READ, FILE_SHARE_READ, NULL,
146 OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, 0);
147 if (file == INVALID_HANDLE_VALUE)
148 return FALSE;
149
150 size = GetFileSize (file, &upper_size);
151 file_mapping = CreateFileMapping (file, NULL, PAGE_READONLY,
152 0, size, NULL);
153 if (!file_mapping)
154 return FALSE;
155
156 file_base = MapViewOfFile (file_mapping, FILE_MAP_READ, 0, 0, size);
157 if (file_base == 0)
158 return FALSE;
159
160 p_file->name = filename;
161 p_file->size = size;
162 p_file->file = file;
163 p_file->file_mapping = file_mapping;
164 p_file->file_base = file_base;
165
166 return TRUE;
167 }
168
169 int
170 open_output_file (file_data *p_file, char *filename, unsigned long size)
171 {
172 HANDLE file;
173 HANDLE file_mapping;
174 void *file_base;
175
176 file = CreateFile (filename, GENERIC_READ | GENERIC_WRITE, 0, NULL,
177 CREATE_ALWAYS, FILE_ATTRIBUTE_NORMAL, 0);
178 if (file == INVALID_HANDLE_VALUE)
179 return FALSE;
180
181 file_mapping = CreateFileMapping (file, NULL, PAGE_READWRITE,
182 0, size, NULL);
183 if (!file_mapping)
184 return FALSE;
185
186 file_base = MapViewOfFile (file_mapping, FILE_MAP_WRITE, 0, 0, size);
187 if (file_base == 0)
188 return FALSE;
189
190 p_file->name = filename;
191 p_file->size = size;
192 p_file->file = file;
193 p_file->file_mapping = file_mapping;
194 p_file->file_base = file_base;
195
196 return TRUE;
197 }
198
199 /* Close the system structures associated with the given file. */
200 void
201 close_file_data (file_data *p_file)
202 {
203 UnmapViewOfFile (p_file->file_base);
204 CloseHandle (p_file->file_mapping);
205 /* For the case of output files, set final size. */
206 SetFilePointer (p_file->file, p_file->size, NULL, FILE_BEGIN);
207 SetEndOfFile (p_file->file);
208 CloseHandle (p_file->file);
209 }
210
211
212 /* Routines to manipulate NT executable file sections. */
213
214 /* Return pointer to section header for named section. */
215 IMAGE_SECTION_HEADER *
216 find_section (char * name, IMAGE_NT_HEADERS * nt_header)
217 {
218 PIMAGE_SECTION_HEADER section;
219 int i;
220
221 section = IMAGE_FIRST_SECTION (nt_header);
222
223 for (i = 0; i < nt_header->FileHeader.NumberOfSections; i++)
224 {
225 if (strcmp (section->Name, name) == 0)
226 return section;
227 section++;
228 }
229 return NULL;
230 }
231
232 /* Return pointer to section header for section containing the given
233 relative virtual address. */
234 IMAGE_SECTION_HEADER *
235 rva_to_section (DWORD_PTR rva, IMAGE_NT_HEADERS * nt_header)
236 {
237 PIMAGE_SECTION_HEADER section;
238 int i;
239
240 section = IMAGE_FIRST_SECTION (nt_header);
241
242 for (i = 0; i < nt_header->FileHeader.NumberOfSections; i++)
243 {
244 /* Some linkers (eg. the NT SDK linker I believe) swapped the
245 meaning of these two values - or rather, they ignored
246 VirtualSize entirely and always set it to zero. This affects
247 some very old exes (eg. gzip dated Dec 1993). Since
248 w32_executable_type relies on this function to work reliably,
249 we need to cope with this. */
250 DWORD_PTR real_size = max (section->SizeOfRawData,
251 section->Misc.VirtualSize);
252 if (rva >= section->VirtualAddress
253 && rva < section->VirtualAddress + real_size)
254 return section;
255 section++;
256 }
257 return NULL;
258 }
259
260 /* Return pointer to section header for section containing the given
261 offset in its raw data area. */
262 IMAGE_SECTION_HEADER *
263 offset_to_section (DWORD_PTR offset, IMAGE_NT_HEADERS * nt_header)
264 {
265 PIMAGE_SECTION_HEADER section;
266 int i;
267
268 section = IMAGE_FIRST_SECTION (nt_header);
269
270 for (i = 0; i < nt_header->FileHeader.NumberOfSections; i++)
271 {
272 if (offset >= section->PointerToRawData
273 && offset < section->PointerToRawData + section->SizeOfRawData)
274 return section;
275 section++;
276 }
277 return NULL;
278 }
279
280 /* Return offset to an object in dst, given offset in src. We assume
281 there is at least one section in both src and dst images, and that
282 the some sections may have been added to dst (after sections in src). */
283 DWORD_PTR
284 relocate_offset (DWORD_PTR offset,
285 IMAGE_NT_HEADERS * src_nt_header,
286 IMAGE_NT_HEADERS * dst_nt_header)
287 {
288 PIMAGE_SECTION_HEADER src_section = IMAGE_FIRST_SECTION (src_nt_header);
289 PIMAGE_SECTION_HEADER dst_section = IMAGE_FIRST_SECTION (dst_nt_header);
290 int i = 0;
291
292 while (offset >= src_section->PointerToRawData)
293 {
294 if (offset < src_section->PointerToRawData + src_section->SizeOfRawData)
295 break;
296 i++;
297 if (i == src_nt_header->FileHeader.NumberOfSections)
298 {
299 /* Handle offsets after the last section. */
300 dst_section = IMAGE_FIRST_SECTION (dst_nt_header);
301 dst_section += dst_nt_header->FileHeader.NumberOfSections - 1;
302 while (dst_section->PointerToRawData == 0)
303 dst_section--;
304 while (src_section->PointerToRawData == 0)
305 src_section--;
306 return offset
307 + (dst_section->PointerToRawData + dst_section->SizeOfRawData)
308 - (src_section->PointerToRawData + src_section->SizeOfRawData);
309 }
310 src_section++;
311 dst_section++;
312 }
313 return offset +
314 (dst_section->PointerToRawData - src_section->PointerToRawData);
315 }
316
317 #define OFFSET_TO_RVA(offset, section) \
318 ((section)->VirtualAddress + ((DWORD_PTR)(offset) - (section)->PointerToRawData))
319
320 #define RVA_TO_OFFSET(rva, section) \
321 ((section)->PointerToRawData + ((DWORD_PTR)(rva) - (section)->VirtualAddress))
322
323 #define RVA_TO_SECTION_OFFSET(rva, section) \
324 ((DWORD_PTR)(rva) - (section)->VirtualAddress)
325
326 /* Convert address in executing image to RVA. */
327 #define PTR_TO_RVA(ptr) ((DWORD_PTR)(ptr) - (DWORD_PTR) GetModuleHandle (NULL))
328
329 #define RVA_TO_PTR(var,section,filedata) \
330 ((unsigned char *)(RVA_TO_OFFSET (var,section) + (filedata).file_base))
331
332 #define PTR_TO_OFFSET(ptr, pfile_data) \
333 ((unsigned char *)(ptr) - (pfile_data)->file_base)
334
335 #define OFFSET_TO_PTR(offset, pfile_data) \
336 ((pfile_data)->file_base + (DWORD_PTR)(offset))
337
338
339 /* Flip through the executable and cache the info necessary for dumping. */
340 void
341 get_section_info (file_data *p_infile)
342 {
343 PIMAGE_DOS_HEADER dos_header;
344 PIMAGE_NT_HEADERS nt_header;
345 int overlap;
346
347 dos_header = (PIMAGE_DOS_HEADER) p_infile->file_base;
348 if (dos_header->e_magic != IMAGE_DOS_SIGNATURE)
349 {
350 printf ("Unknown EXE header in %s...bailing.\n", p_infile->name);
351 exit (1);
352 }
353 nt_header = (PIMAGE_NT_HEADERS) (((DWORD_PTR) dos_header) +
354 dos_header->e_lfanew);
355 if (nt_header == NULL)
356 {
357 printf ("Failed to find IMAGE_NT_HEADER in %s...bailing.\n",
358 p_infile->name);
359 exit (1);
360 }
361
362 /* Check the NT header signature ... */
363 if (nt_header->Signature != IMAGE_NT_SIGNATURE)
364 {
365 printf ("Invalid IMAGE_NT_SIGNATURE 0x%x in %s...bailing.\n",
366 nt_header->Signature, p_infile->name);
367 exit (1);
368 }
369
370 /* Locate the ".data" and ".bss" sections for Emacs. (Note that the
371 actual section names are probably different from these, and might
372 actually be the same section.)
373
374 We do this as follows: first we determine the virtual address
375 ranges in this process for the data and bss variables that we wish
376 to preserve. Then we map these VAs to the section entries in the
377 source image. Finally, we determine the new size of the raw data
378 area for the bss section, so we can make the new image the correct
379 size. */
380
381 /* We arrange for the Emacs initialized data to be in a separate
382 section if possible, because we cannot rely on my_begdata and
383 my_edata marking out the full extent of the initialized data, at
384 least on the Alpha where the linker freely reorders variables
385 across libraries. If we can arrange for this, all we need to do is
386 find the start and size of the EMDATA section. */
387 data_section = find_section ("EMDATA", nt_header);
388 if (data_section)
389 {
390 data_start = (char *) nt_header->OptionalHeader.ImageBase +
391 data_section->VirtualAddress;
392 data_size = data_section->Misc.VirtualSize;
393 }
394 else
395 {
396 /* Fallback on the old method if compiler doesn't support the
397 data_set #pragma (or its equivalent). */
398 data_start = my_begdata;
399 data_size = my_edata - my_begdata;
400 data_section = rva_to_section (PTR_TO_RVA (my_begdata), nt_header);
401 if (data_section != rva_to_section (PTR_TO_RVA (my_edata), nt_header))
402 {
403 printf ("Initialized data is not in a single section...bailing\n");
404 exit (1);
405 }
406 }
407
408 /* As noted in lastfile.c, the Alpha (but not the Intel) MSVC linker
409 globally segregates all static and public bss data (ie. across all
410 linked modules, not just per module), so we must take both static
411 and public bss areas into account to determine the true extent of
412 the bss area used by Emacs.
413
414 To be strictly correct, we dump the static and public bss areas
415 used by Emacs separately if non-overlapping (since otherwise we are
416 dumping bss data belonging to system libraries, eg. the static bss
417 system data on the Alpha). */
418
419 bss_start = my_begbss;
420 bss_size = my_endbss - my_begbss;
421 bss_section = rva_to_section (PTR_TO_RVA (my_begbss), nt_header);
422 if (bss_section != rva_to_section (PTR_TO_RVA (my_endbss), nt_header))
423 {
424 printf ("Uninitialized data is not in a single section...bailing\n");
425 exit (1);
426 }
427 /* Compute how much the .bss section's raw data will grow. */
428 extra_bss_size =
429 ROUND_UP (RVA_TO_SECTION_OFFSET (PTR_TO_RVA (my_endbss), bss_section),
430 nt_header->OptionalHeader.FileAlignment)
431 - bss_section->SizeOfRawData;
432
433 bss_start_static = my_begbss_static;
434 bss_size_static = my_endbss_static - my_begbss_static;
435 bss_section_static = rva_to_section (PTR_TO_RVA (my_begbss_static), nt_header);
436 if (bss_section_static != rva_to_section (PTR_TO_RVA (my_endbss_static), nt_header))
437 {
438 printf ("Uninitialized static data is not in a single section...bailing\n");
439 exit (1);
440 }
441 /* Compute how much the static .bss section's raw data will grow. */
442 extra_bss_size_static =
443 ROUND_UP (RVA_TO_SECTION_OFFSET (PTR_TO_RVA (my_endbss_static), bss_section_static),
444 nt_header->OptionalHeader.FileAlignment)
445 - bss_section_static->SizeOfRawData;
446
447 /* Combine the bss sections into one if they overlap. */
448 #ifdef _ALPHA_
449 overlap = 1; /* force all bss data to be dumped */
450 #else
451 overlap = 0;
452 #endif
453 if (bss_start < bss_start_static)
454 {
455 if (bss_start_static < bss_start + bss_size)
456 overlap = 1;
457 }
458 else
459 {
460 if (bss_start < bss_start_static + bss_size_static)
461 overlap = 1;
462 }
463 if (overlap)
464 {
465 if (bss_section != bss_section_static)
466 {
467 printf ("BSS data not in a single section...bailing\n");
468 exit (1);
469 }
470 bss_start = min (bss_start, bss_start_static);
471 bss_size = max (my_endbss, my_endbss_static) - bss_start;
472 bss_section_static = 0;
473 extra_bss_size_static = 0;
474 }
475
476 heap_section = rva_to_section (PTR_TO_RVA (get_heap_start ()), nt_header);
477 }
478
479
480 /* The dump routines. */
481
482 void
483 copy_executable_and_dump_data (file_data *p_infile,
484 file_data *p_outfile)
485 {
486 unsigned char *dst, *dst_save;
487 PIMAGE_DOS_HEADER dos_header;
488 PIMAGE_NT_HEADERS nt_header;
489 PIMAGE_NT_HEADERS dst_nt_header;
490 PIMAGE_SECTION_HEADER section;
491 PIMAGE_SECTION_HEADER dst_section;
492 DWORD_PTR offset;
493 int i;
494 int be_verbose = GetEnvironmentVariable ("DEBUG_DUMP", NULL, 0) > 0;
495
496 #define COPY_CHUNK(message, src, size, verbose) \
497 do { \
498 unsigned char *s = (void *)(src); \
499 unsigned long count = (size); \
500 if (verbose) \
501 { \
502 printf ("%s\n", (message)); \
503 printf ("\t0x%08x Offset in input file.\n", s - p_infile->file_base); \
504 printf ("\t0x%08x Offset in output file.\n", dst - p_outfile->file_base); \
505 printf ("\t0x%08x Size in bytes.\n", count); \
506 } \
507 memcpy (dst, s, count); \
508 dst += count; \
509 } while (0)
510
511 #define COPY_PROC_CHUNK(message, src, size, verbose) \
512 do { \
513 unsigned char *s = (void *)(src); \
514 unsigned long count = (size); \
515 if (verbose) \
516 { \
517 printf ("%s\n", (message)); \
518 printf ("\t0x%08x Address in process.\n", s); \
519 printf ("\t0x%08x Offset in output file.\n", dst - p_outfile->file_base); \
520 printf ("\t0x%08x Size in bytes.\n", count); \
521 } \
522 memcpy (dst, s, count); \
523 dst += count; \
524 } while (0)
525
526 #define DST_TO_OFFSET() PTR_TO_OFFSET (dst, p_outfile)
527 #define ROUND_UP_DST(align) \
528 (dst = p_outfile->file_base + ROUND_UP (DST_TO_OFFSET (), (align)))
529 #define ROUND_UP_DST_AND_ZERO(align) \
530 do { \
531 unsigned char *newdst = p_outfile->file_base \
532 + ROUND_UP (DST_TO_OFFSET (), (align)); \
533 /* Zero the alignment slop; it may actually initialize real data. */ \
534 memset (dst, 0, newdst - dst); \
535 dst = newdst; \
536 } while (0)
537
538 /* Copy the source image sequentially, ie. section by section after
539 copying the headers and section table, to simplify the process of
540 dumping the raw data for the bss and heap sections.
541
542 Note that dst is updated implicitly by each COPY_CHUNK. */
543
544 dos_header = (PIMAGE_DOS_HEADER) p_infile->file_base;
545 nt_header = (PIMAGE_NT_HEADERS) (((DWORD_PTR) dos_header) +
546 dos_header->e_lfanew);
547 section = IMAGE_FIRST_SECTION (nt_header);
548
549 dst = (unsigned char *) p_outfile->file_base;
550
551 COPY_CHUNK ("Copying DOS header...", dos_header,
552 (DWORD_PTR) nt_header - (DWORD_PTR) dos_header, be_verbose);
553 dst_nt_header = (PIMAGE_NT_HEADERS) dst;
554 COPY_CHUNK ("Copying NT header...", nt_header,
555 (DWORD_PTR) section - (DWORD_PTR) nt_header, be_verbose);
556 dst_section = (PIMAGE_SECTION_HEADER) dst;
557 COPY_CHUNK ("Copying section table...", section,
558 nt_header->FileHeader.NumberOfSections * sizeof (*section),
559 be_verbose);
560
561 /* Align the first section's raw data area, and set the header size
562 field accordingly. */
563 ROUND_UP_DST_AND_ZERO (dst_nt_header->OptionalHeader.FileAlignment);
564 dst_nt_header->OptionalHeader.SizeOfHeaders = DST_TO_OFFSET ();
565
566 for (i = 0; i < nt_header->FileHeader.NumberOfSections; i++)
567 {
568 char msg[100];
569 /* Windows section names are fixed 8-char strings, only
570 zero-terminated if the name is shorter than 8 characters. */
571 sprintf (msg, "Copying raw data for %.8s...", section->Name);
572
573 dst_save = dst;
574
575 /* Update the file-relative offset for this section's raw data (if
576 it has any) in case things have been relocated; we will update
577 the other offsets below once we know where everything is. */
578 if (dst_section->PointerToRawData)
579 dst_section->PointerToRawData = DST_TO_OFFSET ();
580
581 /* Can always copy the original raw data. */
582 COPY_CHUNK
583 (msg, OFFSET_TO_PTR (section->PointerToRawData, p_infile),
584 section->SizeOfRawData, be_verbose);
585 /* Ensure alignment slop is zeroed. */
586 ROUND_UP_DST_AND_ZERO (dst_nt_header->OptionalHeader.FileAlignment);
587
588 /* Note that various sections below may be aliases. */
589 if (section == data_section)
590 {
591 dst = dst_save
592 + RVA_TO_SECTION_OFFSET (PTR_TO_RVA (data_start), dst_section);
593 COPY_PROC_CHUNK ("Dumping initialized data...",
594 data_start, data_size, be_verbose);
595 dst = dst_save + dst_section->SizeOfRawData;
596 }
597 if (section == bss_section)
598 {
599 /* Dump contents of bss variables, adjusting the section's raw
600 data size as necessary. */
601 dst = dst_save
602 + RVA_TO_SECTION_OFFSET (PTR_TO_RVA (bss_start), dst_section);
603 COPY_PROC_CHUNK ("Dumping bss data...", bss_start,
604 bss_size, be_verbose);
605 ROUND_UP_DST (dst_nt_header->OptionalHeader.FileAlignment);
606 dst_section->PointerToRawData = PTR_TO_OFFSET (dst_save, p_outfile);
607 /* Determine new size of raw data area. */
608 dst = max (dst, dst_save + dst_section->SizeOfRawData);
609 dst_section->SizeOfRawData = dst - dst_save;
610 dst_section->Characteristics &= ~IMAGE_SCN_CNT_UNINITIALIZED_DATA;
611 dst_section->Characteristics |= IMAGE_SCN_CNT_INITIALIZED_DATA;
612 }
613 if (section == bss_section_static)
614 {
615 /* Dump contents of static bss variables, adjusting the
616 section's raw data size as necessary. */
617 dst = dst_save
618 + RVA_TO_SECTION_OFFSET (PTR_TO_RVA (bss_start_static), dst_section);
619 COPY_PROC_CHUNK ("Dumping static bss data...", bss_start_static,
620 bss_size_static, be_verbose);
621 ROUND_UP_DST (dst_nt_header->OptionalHeader.FileAlignment);
622 dst_section->PointerToRawData = PTR_TO_OFFSET (dst_save, p_outfile);
623 /* Determine new size of raw data area. */
624 dst = max (dst, dst_save + dst_section->SizeOfRawData);
625 dst_section->SizeOfRawData = dst - dst_save;
626 dst_section->Characteristics &= ~IMAGE_SCN_CNT_UNINITIALIZED_DATA;
627 dst_section->Characteristics |= IMAGE_SCN_CNT_INITIALIZED_DATA;
628 }
629 if (section == heap_section)
630 {
631 DWORD_PTR heap_start = (DWORD_PTR) get_heap_start ();
632 DWORD_PTR heap_size = get_committed_heap_size ();
633
634 /* Dump the used portion of the predump heap, adjusting the
635 section's size to the appropriate size. */
636 dst = dst_save
637 + RVA_TO_SECTION_OFFSET (PTR_TO_RVA (heap_start), dst_section);
638 COPY_PROC_CHUNK ("Dumping heap...", heap_start, heap_size,
639 be_verbose);
640 ROUND_UP_DST (dst_nt_header->OptionalHeader.FileAlignment);
641 dst_section->PointerToRawData = PTR_TO_OFFSET (dst_save, p_outfile);
642 /* Determine new size of raw data area. */
643 dst = max (dst, dst_save + dst_section->SizeOfRawData);
644 dst_section->SizeOfRawData = dst - dst_save;
645 /* Reduce the size of the heap section to fit (must be last
646 section). */
647 dst_nt_header->OptionalHeader.SizeOfImage -=
648 dst_section->Misc.VirtualSize
649 - ROUND_UP (dst_section->SizeOfRawData,
650 dst_nt_header->OptionalHeader.SectionAlignment);
651 dst_section->Misc.VirtualSize =
652 ROUND_UP (dst_section->SizeOfRawData,
653 dst_nt_header->OptionalHeader.SectionAlignment);
654 dst_section->Characteristics &= ~IMAGE_SCN_CNT_UNINITIALIZED_DATA;
655 dst_section->Characteristics |= IMAGE_SCN_CNT_INITIALIZED_DATA;
656 }
657
658 /* Align the section's raw data area. */
659 ROUND_UP_DST (dst_nt_header->OptionalHeader.FileAlignment);
660
661 section++;
662 dst_section++;
663 }
664
665 /* Copy remainder of source image. */
666 do
667 section--;
668 while (section->PointerToRawData == 0);
669 offset = ROUND_UP (section->PointerToRawData + section->SizeOfRawData,
670 nt_header->OptionalHeader.FileAlignment);
671 COPY_CHUNK
672 ("Copying remainder of executable...",
673 OFFSET_TO_PTR (offset, p_infile),
674 p_infile->size - offset, be_verbose);
675
676 /* Final size for new image. */
677 p_outfile->size = DST_TO_OFFSET ();
678
679 /* Now patch up remaining file-relative offsets. */
680 section = IMAGE_FIRST_SECTION (nt_header);
681 dst_section = IMAGE_FIRST_SECTION (dst_nt_header);
682
683 #define ADJUST_OFFSET(var) \
684 do { \
685 if ((var) != 0) \
686 (var) = relocate_offset ((var), nt_header, dst_nt_header); \
687 } while (0)
688
689 dst_nt_header->OptionalHeader.SizeOfInitializedData = 0;
690 dst_nt_header->OptionalHeader.SizeOfUninitializedData = 0;
691 for (i = 0; i < dst_nt_header->FileHeader.NumberOfSections; i++)
692 {
693 /* Recompute data sizes for completeness. */
694 if (dst_section[i].Characteristics & IMAGE_SCN_CNT_INITIALIZED_DATA)
695 dst_nt_header->OptionalHeader.SizeOfInitializedData +=
696 ROUND_UP (dst_section[i].Misc.VirtualSize, dst_nt_header->OptionalHeader.FileAlignment);
697 else if (dst_section[i].Characteristics & IMAGE_SCN_CNT_UNINITIALIZED_DATA)
698 dst_nt_header->OptionalHeader.SizeOfUninitializedData +=
699 ROUND_UP (dst_section[i].Misc.VirtualSize, dst_nt_header->OptionalHeader.FileAlignment);
700
701 ADJUST_OFFSET (dst_section[i].PointerToLinenumbers);
702 }
703
704 ADJUST_OFFSET (dst_nt_header->FileHeader.PointerToSymbolTable);
705
706 /* Update offsets in debug directory entries. */
707 {
708 IMAGE_DATA_DIRECTORY debug_dir =
709 dst_nt_header->OptionalHeader.DataDirectory[IMAGE_DIRECTORY_ENTRY_DEBUG];
710 PIMAGE_DEBUG_DIRECTORY debug_entry;
711
712 section = rva_to_section (debug_dir.VirtualAddress, dst_nt_header);
713 if (section)
714 {
715 debug_entry = (PIMAGE_DEBUG_DIRECTORY)
716 (RVA_TO_OFFSET (debug_dir.VirtualAddress, section) + p_outfile->file_base);
717 debug_dir.Size /= sizeof (IMAGE_DEBUG_DIRECTORY);
718
719 for (i = 0; i < debug_dir.Size; i++, debug_entry++)
720 ADJUST_OFFSET (debug_entry->PointerToRawData);
721 }
722 }
723 }
724
725
726 /* Dump out .data and .bss sections into a new executable. */
727 void
728 unexec (const char *new_name, const char *old_name)
729 {
730 file_data in_file, out_file;
731 char out_filename[MAX_PATH], in_filename[MAX_PATH];
732 unsigned long size;
733 char *p;
734 char *q;
735
736 /* Ignore old_name, and get our actual location from the OS. */
737 if (!GetModuleFileName (NULL, in_filename, MAX_PATH))
738 abort ();
739 dostounix_filename (in_filename);
740 strcpy (out_filename, in_filename);
741
742 /* Change the base of the output filename to match the requested name. */
743 if ((p = strrchr (out_filename, '/')) == NULL)
744 abort ();
745 /* The filenames have already been expanded, and will be in Unix
746 format, so it is safe to expect an absolute name. */
747 if ((q = strrchr (new_name, '/')) == NULL)
748 abort ();
749 strcpy (p, q);
750
751 /* Make sure that the output filename has the ".exe" extension...patch
752 it up if not. */
753 p = out_filename + strlen (out_filename) - 4;
754 if (strcmp (p, ".exe"))
755 strcat (out_filename, ".exe");
756
757 printf ("Dumping from %s\n", in_filename);
758 printf (" to %s\n", out_filename);
759
760 /* We need to round off our heap to NT's page size. */
761 round_heap (get_page_size ());
762
763 /* Open the undumped executable file. */
764 if (!open_input_file (&in_file, in_filename))
765 {
766 printf ("Failed to open %s (%d)...bailing.\n",
767 in_filename, GetLastError ());
768 exit (1);
769 }
770
771 /* Get the interesting section info, like start and size of .bss... */
772 get_section_info (&in_file);
773
774 /* The size of the dumped executable is the size of the original
775 executable plus the size of the heap and the size of the .bss section. */
776 size = in_file.size +
777 get_committed_heap_size () +
778 extra_bss_size +
779 extra_bss_size_static;
780 if (!open_output_file (&out_file, out_filename, size))
781 {
782 printf ("Failed to open %s (%d)...bailing.\n",
783 out_filename, GetLastError ());
784 exit (1);
785 }
786
787 /* Set the flag (before dumping). */
788 using_dynamic_heap = TRUE;
789
790 copy_executable_and_dump_data (&in_file, &out_file);
791
792 /* Patch up header fields; profiler is picky about this. */
793 {
794 PIMAGE_DOS_HEADER dos_header;
795 PIMAGE_NT_HEADERS nt_header;
796 HANDLE hImagehelp = LoadLibrary ("imagehlp.dll");
797 DWORD headersum;
798 DWORD checksum;
799
800 dos_header = (PIMAGE_DOS_HEADER) out_file.file_base;
801 nt_header = (PIMAGE_NT_HEADERS) ((char *) dos_header + dos_header->e_lfanew);
802
803 nt_header->OptionalHeader.CheckSum = 0;
804 // nt_header->FileHeader.TimeDateStamp = time (NULL);
805 // dos_header->e_cp = size / 512;
806 // nt_header->OptionalHeader.SizeOfImage = size;
807
808 pfnCheckSumMappedFile = (void *) GetProcAddress (hImagehelp, "CheckSumMappedFile");
809 if (pfnCheckSumMappedFile)
810 {
811 // nt_header->FileHeader.TimeDateStamp = time (NULL);
812 pfnCheckSumMappedFile (out_file.file_base,
813 out_file.size,
814 &headersum,
815 &checksum);
816 nt_header->OptionalHeader.CheckSum = checksum;
817 }
818 FreeLibrary (hImagehelp);
819 }
820
821 close_file_data (&in_file);
822 close_file_data (&out_file);
823 }
824
825 /* eof */