mirror of
https://git.savannah.gnu.org/git/emacs.git
synced 2024-12-20 10:23:57 +00:00
972ee7e089
as possible to be dumped, for safety.
805 lines
26 KiB
C
805 lines
26 KiB
C
/* unexec for GNU Emacs on Windows NT.
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Copyright (C) 1994 Free Software Foundation, Inc.
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This file is part of GNU Emacs.
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GNU Emacs is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2, or (at your option)
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any later version.
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GNU Emacs is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GNU Emacs; see the file COPYING. If not, write to
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the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
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Boston, MA 02111-1307, USA.
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Geoff Voelker (voelker@cs.washington.edu) 8-12-94
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*/
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#include <config.h>
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#include <stdlib.h> /* _fmode */
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#include <stdio.h>
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#include <fcntl.h>
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#include <time.h>
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#include <windows.h>
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/* Include relevant definitions from IMAGEHLP.H, which can be found
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in \\win32sdk\mstools\samples\image\include\imagehlp.h. */
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PIMAGE_NT_HEADERS
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(__stdcall * pfnCheckSumMappedFile) (LPVOID BaseAddress,
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DWORD FileLength,
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LPDWORD HeaderSum,
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LPDWORD CheckSum);
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extern BOOL ctrl_c_handler (unsigned long type);
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extern char my_begdata[];
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extern char my_edata[];
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extern char my_begbss[];
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extern char my_endbss[];
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extern char *my_begbss_static;
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extern char *my_endbss_static;
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#include "w32heap.h"
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#undef min
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#undef max
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#define min(x, y) (((x) < (y)) ? (x) : (y))
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#define max(x, y) (((x) > (y)) ? (x) : (y))
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/* Basically, our "initialized" flag. */
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BOOL using_dynamic_heap = FALSE;
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int open_input_file (file_data *p_file, char *name);
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int open_output_file (file_data *p_file, char *name, unsigned long size);
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void close_file_data (file_data *p_file);
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void get_section_info (file_data *p_file);
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void copy_executable_and_dump_data (file_data *, file_data *);
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void dump_bss_and_heap (file_data *p_infile, file_data *p_outfile);
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/* Cached info about the .data section in the executable. */
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PIMAGE_SECTION_HEADER data_section;
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PUCHAR data_start = 0;
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DWORD data_size = 0;
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/* Cached info about the .bss section in the executable. */
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PIMAGE_SECTION_HEADER bss_section;
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PUCHAR bss_start = 0;
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DWORD bss_size = 0;
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DWORD extra_bss_size = 0;
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/* bss data that is static might be discontiguous from non-static. */
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PIMAGE_SECTION_HEADER bss_section_static;
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PUCHAR bss_start_static = 0;
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DWORD bss_size_static = 0;
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DWORD extra_bss_size_static = 0;
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PIMAGE_SECTION_HEADER heap_section;
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#ifdef HAVE_NTGUI
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HINSTANCE hinst = NULL;
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HINSTANCE hprevinst = NULL;
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LPSTR lpCmdLine = "";
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int nCmdShow = 0;
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#endif /* HAVE_NTGUI */
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/* Startup code for running on NT. When we are running as the dumped
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version, we need to bootstrap our heap and .bss section into our
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address space before we can actually hand off control to the startup
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code supplied by NT (primarily because that code relies upon malloc ()). */
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void
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_start (void)
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{
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extern void mainCRTStartup (void);
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#if 1
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/* Give us a way to debug problems with crashes on startup when
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running under the MSVC profiler. */
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if (GetEnvironmentVariable ("EMACS_DEBUG", NULL, 0) > 0)
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DebugBreak ();
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#endif
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/* Cache system info, e.g., the NT page size. */
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cache_system_info ();
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/* Grab our malloc arena space now, before CRT starts up. */
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init_heap ();
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/* The default behavior is to treat files as binary and patch up
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text files appropriately, in accordance with the MSDOS code. */
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_fmode = O_BINARY;
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/* This prevents ctrl-c's in shells running while we're suspended from
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having us exit. */
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SetConsoleCtrlHandler ((PHANDLER_ROUTINE) ctrl_c_handler, TRUE);
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/* Prevent Emacs from being locked up (eg. in batch mode) when
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accessing devices that aren't mounted (eg. removable media drives). */
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SetErrorMode (SEM_FAILCRITICALERRORS);
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/* Invoke the NT CRT startup routine now that our housecleaning
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is finished. */
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#ifdef HAVE_NTGUI
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/* determine WinMain args like crt0.c does */
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hinst = GetModuleHandle(NULL);
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lpCmdLine = GetCommandLine();
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nCmdShow = SW_SHOWDEFAULT;
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#endif
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mainCRTStartup ();
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}
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/* File handling. */
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int
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open_input_file (file_data *p_file, char *filename)
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{
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HANDLE file;
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HANDLE file_mapping;
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void *file_base;
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unsigned long size, upper_size;
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file = CreateFile (filename, GENERIC_READ, FILE_SHARE_READ, NULL,
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OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, 0);
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if (file == INVALID_HANDLE_VALUE)
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return FALSE;
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size = GetFileSize (file, &upper_size);
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file_mapping = CreateFileMapping (file, NULL, PAGE_READONLY,
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0, size, NULL);
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if (!file_mapping)
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return FALSE;
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file_base = MapViewOfFile (file_mapping, FILE_MAP_READ, 0, 0, size);
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if (file_base == 0)
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return FALSE;
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p_file->name = filename;
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p_file->size = size;
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p_file->file = file;
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p_file->file_mapping = file_mapping;
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p_file->file_base = file_base;
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return TRUE;
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}
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int
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open_output_file (file_data *p_file, char *filename, unsigned long size)
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{
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HANDLE file;
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HANDLE file_mapping;
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void *file_base;
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file = CreateFile (filename, GENERIC_READ | GENERIC_WRITE, 0, NULL,
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CREATE_ALWAYS, FILE_ATTRIBUTE_NORMAL, 0);
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if (file == INVALID_HANDLE_VALUE)
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return FALSE;
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file_mapping = CreateFileMapping (file, NULL, PAGE_READWRITE,
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0, size, NULL);
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if (!file_mapping)
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return FALSE;
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file_base = MapViewOfFile (file_mapping, FILE_MAP_WRITE, 0, 0, size);
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if (file_base == 0)
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return FALSE;
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p_file->name = filename;
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p_file->size = size;
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p_file->file = file;
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p_file->file_mapping = file_mapping;
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p_file->file_base = file_base;
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return TRUE;
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}
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/* Close the system structures associated with the given file. */
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void
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close_file_data (file_data *p_file)
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{
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UnmapViewOfFile (p_file->file_base);
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CloseHandle (p_file->file_mapping);
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/* For the case of output files, set final size. */
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SetFilePointer (p_file->file, p_file->size, NULL, FILE_BEGIN);
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SetEndOfFile (p_file->file);
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CloseHandle (p_file->file);
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}
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/* Routines to manipulate NT executable file sections. */
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/* Return pointer to section header for named section. */
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IMAGE_SECTION_HEADER *
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find_section (char * name, IMAGE_NT_HEADERS * nt_header)
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{
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PIMAGE_SECTION_HEADER section;
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int i;
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section = IMAGE_FIRST_SECTION (nt_header);
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for (i = 0; i < nt_header->FileHeader.NumberOfSections; i++)
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{
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if (strcmp (section->Name, name) == 0)
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return section;
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section++;
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}
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return NULL;
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}
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/* Return pointer to section header for section containing the given
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relative virtual address. */
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IMAGE_SECTION_HEADER *
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rva_to_section (DWORD rva, IMAGE_NT_HEADERS * nt_header)
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{
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PIMAGE_SECTION_HEADER section;
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int i;
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section = IMAGE_FIRST_SECTION (nt_header);
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for (i = 0; i < nt_header->FileHeader.NumberOfSections; i++)
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{
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/* Some linkers (eg. the NT SDK linker I believe) swapped the
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meaning of these two values - or rather, they ignored
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VirtualSize entirely and always set it to zero. This affects
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some very old exes (eg. gzip dated Dec 1993). Since
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w32_executable_type relies on this function to work reliably,
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we need to cope with this. */
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DWORD real_size = max (section->SizeOfRawData,
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section->Misc.VirtualSize);
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if (rva >= section->VirtualAddress
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&& rva < section->VirtualAddress + real_size)
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return section;
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section++;
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}
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return NULL;
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}
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/* Return pointer to section header for section containing the given
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offset in its raw data area. */
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IMAGE_SECTION_HEADER *
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offset_to_section (DWORD offset, IMAGE_NT_HEADERS * nt_header)
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{
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PIMAGE_SECTION_HEADER section;
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int i;
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section = IMAGE_FIRST_SECTION (nt_header);
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for (i = 0; i < nt_header->FileHeader.NumberOfSections; i++)
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{
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if (offset >= section->PointerToRawData
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&& offset < section->PointerToRawData + section->SizeOfRawData)
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return section;
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section++;
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}
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return NULL;
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}
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/* Return offset to an object in dst, given offset in src. We assume
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there is at least one section in both src and dst images, and that
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the some sections may have been added to dst (after sections in src). */
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static DWORD
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relocate_offset (DWORD offset,
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IMAGE_NT_HEADERS * src_nt_header,
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IMAGE_NT_HEADERS * dst_nt_header)
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{
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PIMAGE_SECTION_HEADER src_section = IMAGE_FIRST_SECTION (src_nt_header);
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PIMAGE_SECTION_HEADER dst_section = IMAGE_FIRST_SECTION (dst_nt_header);
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int i = 0;
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while (offset >= src_section->PointerToRawData)
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{
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if (offset < src_section->PointerToRawData + src_section->SizeOfRawData)
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break;
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i++;
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if (i == src_nt_header->FileHeader.NumberOfSections)
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{
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/* Handle offsets after the last section. */
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dst_section = IMAGE_FIRST_SECTION (dst_nt_header);
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dst_section += dst_nt_header->FileHeader.NumberOfSections - 1;
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while (dst_section->PointerToRawData == 0)
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dst_section--;
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while (src_section->PointerToRawData == 0)
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src_section--;
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return offset
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+ (dst_section->PointerToRawData + dst_section->SizeOfRawData)
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- (src_section->PointerToRawData + src_section->SizeOfRawData);
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}
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src_section++;
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dst_section++;
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}
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return offset +
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(dst_section->PointerToRawData - src_section->PointerToRawData);
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}
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#define OFFSET_TO_RVA(offset, section) \
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(section->VirtualAddress + ((DWORD)(offset) - section->PointerToRawData))
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#define RVA_TO_OFFSET(rva, section) \
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(section->PointerToRawData + ((DWORD)(rva) - section->VirtualAddress))
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#define RVA_TO_SECTION_OFFSET(rva, section) \
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((DWORD)(rva) - section->VirtualAddress)
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/* Convert address in executing image to RVA. */
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#define PTR_TO_RVA(ptr) ((DWORD)(ptr) - (DWORD) GetModuleHandle (NULL))
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#define PTR_TO_OFFSET(ptr, pfile_data) \
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((char *)(ptr) - (pfile_data)->file_base)
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#define OFFSET_TO_PTR(offset, pfile_data) \
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((pfile_data)->file_base + (DWORD)(offset))
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/* Flip through the executable and cache the info necessary for dumping. */
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static void
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get_section_info (file_data *p_infile)
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{
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PIMAGE_DOS_HEADER dos_header;
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PIMAGE_NT_HEADERS nt_header;
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PIMAGE_SECTION_HEADER section;
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int overlap;
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dos_header = (PIMAGE_DOS_HEADER) p_infile->file_base;
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if (dos_header->e_magic != IMAGE_DOS_SIGNATURE)
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{
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printf ("Unknown EXE header in %s...bailing.\n", p_infile->name);
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exit (1);
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}
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nt_header = (PIMAGE_NT_HEADERS) (((unsigned long) dos_header) +
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dos_header->e_lfanew);
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if (nt_header == NULL)
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{
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printf ("Failed to find IMAGE_NT_HEADER in %s...bailing.\n",
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p_infile->name);
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exit (1);
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}
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/* Check the NT header signature ... */
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if (nt_header->Signature != IMAGE_NT_SIGNATURE)
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{
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printf ("Invalid IMAGE_NT_SIGNATURE 0x%x in %s...bailing.\n",
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nt_header->Signature, p_infile->name);
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exit (1);
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}
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/* Locate the ".data" and ".bss" sections for Emacs. (Note that the
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actual section names are probably different from these, and might
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actually be the same section.)
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We do this as follows: first we determine the virtual address
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ranges in this process for the data and bss variables that we wish
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to preserve. Then we map these VAs to the section entries in the
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source image. Finally, we determine the new size of the raw data
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area for the bss section, so we can make the new image the correct
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size. */
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/* We arrange for the Emacs initialized data to be in a separate
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section if possible, because we cannot rely on my_begdata and
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my_edata marking out the full extent of the initialized data, at
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least on the Alpha where the linker freely reorders variables
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across libraries. If we can arrange for this, all we need to do is
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find the start and size of the EMDATA section. */
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data_section = find_section ("EMDATA", nt_header);
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if (data_section)
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{
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data_start = (char *) nt_header->OptionalHeader.ImageBase +
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data_section->VirtualAddress;
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data_size = data_section->Misc.VirtualSize;
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}
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else
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{
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/* Fallback on the old method if compiler doesn't support the
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data_set #pragma (or its equivalent). */
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data_start = my_begdata;
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data_size = my_edata - my_begdata;
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data_section = rva_to_section (PTR_TO_RVA (my_begdata), nt_header);
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if (data_section != rva_to_section (PTR_TO_RVA (my_edata), nt_header))
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{
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printf ("Initialized data is not in a single section...bailing\n");
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exit (1);
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}
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}
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/* As noted in lastfile.c, the Alpha (but not the Intel) MSVC linker
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globally segregates all static and public bss data (ie. across all
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linked modules, not just per module), so we must take both static
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and public bss areas into account to determine the true extent of
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the bss area used by Emacs.
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To be strictly correct, we dump the static and public bss areas
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used by Emacs separately if non-overlapping (since otherwise we are
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dumping bss data belonging to system libraries, eg. the static bss
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system data on the Alpha). */
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bss_start = my_begbss;
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bss_size = my_endbss - my_begbss;
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bss_section = rva_to_section (PTR_TO_RVA (my_begbss), nt_header);
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if (bss_section != rva_to_section (PTR_TO_RVA (my_endbss), nt_header))
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{
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printf ("Uninitialized data is not in a single section...bailing\n");
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exit (1);
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}
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/* Compute how much the .bss section's raw data will grow. */
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extra_bss_size =
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ROUND_UP (RVA_TO_SECTION_OFFSET (PTR_TO_RVA (my_endbss), bss_section),
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nt_header->OptionalHeader.FileAlignment)
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- bss_section->SizeOfRawData;
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bss_start_static = my_begbss_static;
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bss_size_static = my_endbss_static - my_begbss_static;
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bss_section_static = rva_to_section (PTR_TO_RVA (my_begbss_static), nt_header);
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if (bss_section_static != rva_to_section (PTR_TO_RVA (my_endbss_static), nt_header))
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{
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printf ("Uninitialized static data is not in a single section...bailing\n");
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exit (1);
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}
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/* Compute how much the static .bss section's raw data will grow. */
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extra_bss_size_static =
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ROUND_UP (RVA_TO_SECTION_OFFSET (PTR_TO_RVA (my_endbss_static), bss_section_static),
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nt_header->OptionalHeader.FileAlignment)
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- bss_section_static->SizeOfRawData;
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/* Combine the bss sections into one if they overlap. */
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#ifdef _ALPHA_
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overlap = 1; /* force all bss data to be dumped */
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#else
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overlap = 0;
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#endif
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if (bss_start < bss_start_static)
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{
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if (bss_start_static < bss_start + bss_size)
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overlap = 1;
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}
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else
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{
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if (bss_start < bss_start_static + bss_size_static)
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overlap = 1;
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}
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if (overlap)
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{
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if (bss_section != bss_section_static)
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{
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printf ("BSS data not in a single section...bailing\n");
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exit (1);
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}
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bss_start = min (bss_start, bss_start_static);
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bss_size = max (my_endbss, my_endbss_static) - bss_start;
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bss_section_static = 0;
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extra_bss_size_static = 0;
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}
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heap_section = rva_to_section (PTR_TO_RVA (get_heap_start ()), nt_header);
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}
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/* The dump routines. */
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static void
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copy_executable_and_dump_data (file_data *p_infile,
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file_data *p_outfile)
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{
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unsigned char *dst, *dst_save;
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PIMAGE_DOS_HEADER dos_header;
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PIMAGE_NT_HEADERS nt_header;
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PIMAGE_NT_HEADERS dst_nt_header;
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PIMAGE_SECTION_HEADER section;
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PIMAGE_SECTION_HEADER dst_section;
|
|
DWORD offset;
|
|
int i;
|
|
|
|
#define COPY_CHUNK(message, src, size) \
|
|
do { \
|
|
unsigned char *s = (void *)(src); \
|
|
unsigned long count = (size); \
|
|
printf ("%s\n", (message)); \
|
|
printf ("\t0x%08x Offset in input file.\n", s - p_infile->file_base); \
|
|
printf ("\t0x%08x Offset in output file.\n", dst - p_outfile->file_base); \
|
|
printf ("\t0x%08x Size in bytes.\n", count); \
|
|
memcpy (dst, s, count); \
|
|
dst += count; \
|
|
} while (0)
|
|
|
|
#define COPY_PROC_CHUNK(message, src, size) \
|
|
do { \
|
|
unsigned char *s = (void *)(src); \
|
|
unsigned long count = (size); \
|
|
printf ("%s\n", (message)); \
|
|
printf ("\t0x%08x Address in process.\n", s); \
|
|
printf ("\t0x%08x Offset in output file.\n", dst - p_outfile->file_base); \
|
|
printf ("\t0x%08x Size in bytes.\n", count); \
|
|
memcpy (dst, s, count); \
|
|
dst += count; \
|
|
} while (0)
|
|
|
|
#define DST_TO_OFFSET() PTR_TO_OFFSET (dst, p_outfile)
|
|
#define ROUND_UP_DST(align) \
|
|
(dst = p_outfile->file_base + ROUND_UP (DST_TO_OFFSET (), (align)))
|
|
#define ROUND_UP_DST_AND_ZERO(align) \
|
|
do { \
|
|
unsigned char *newdst = p_outfile->file_base \
|
|
+ ROUND_UP (DST_TO_OFFSET (), (align)); \
|
|
/* Zero the alignment slop; it may actually initialize real data. */ \
|
|
memset (dst, 0, newdst - dst); \
|
|
dst = newdst; \
|
|
} while (0)
|
|
|
|
/* Copy the source image sequentially, ie. section by section after
|
|
copying the headers and section table, to simplify the process of
|
|
dumping the raw data for the bss and heap sections.
|
|
|
|
Note that dst is updated implicitly by each COPY_CHUNK. */
|
|
|
|
dos_header = (PIMAGE_DOS_HEADER) p_infile->file_base;
|
|
nt_header = (PIMAGE_NT_HEADERS) (((unsigned long) dos_header) +
|
|
dos_header->e_lfanew);
|
|
section = IMAGE_FIRST_SECTION (nt_header);
|
|
|
|
dst = (unsigned char *) p_outfile->file_base;
|
|
|
|
COPY_CHUNK ("Copying DOS header...", dos_header,
|
|
(DWORD) nt_header - (DWORD) dos_header);
|
|
dst_nt_header = (PIMAGE_NT_HEADERS) dst;
|
|
COPY_CHUNK ("Copying NT header...", nt_header,
|
|
(DWORD) section - (DWORD) nt_header);
|
|
dst_section = (PIMAGE_SECTION_HEADER) dst;
|
|
COPY_CHUNK ("Copying section table...", section,
|
|
nt_header->FileHeader.NumberOfSections * sizeof (*section));
|
|
|
|
/* Align the first section's raw data area, and set the header size
|
|
field accordingly. */
|
|
ROUND_UP_DST_AND_ZERO (dst_nt_header->OptionalHeader.FileAlignment);
|
|
dst_nt_header->OptionalHeader.SizeOfHeaders = DST_TO_OFFSET ();
|
|
|
|
for (i = 0; i < nt_header->FileHeader.NumberOfSections; i++)
|
|
{
|
|
char msg[100];
|
|
sprintf (msg, "Copying raw data for %s...", section->Name);
|
|
|
|
dst_save = dst;
|
|
|
|
/* Update the file-relative offset for this section's raw data (if
|
|
it has any) in case things have been relocated; we will update
|
|
the other offsets below once we know where everything is. */
|
|
if (dst_section->PointerToRawData)
|
|
dst_section->PointerToRawData = DST_TO_OFFSET ();
|
|
|
|
/* Can always copy the original raw data. */
|
|
COPY_CHUNK
|
|
(msg, OFFSET_TO_PTR (section->PointerToRawData, p_infile),
|
|
section->SizeOfRawData);
|
|
/* Ensure alignment slop is zeroed. */
|
|
ROUND_UP_DST_AND_ZERO (dst_nt_header->OptionalHeader.FileAlignment);
|
|
|
|
/* Note that various sections below may be aliases. */
|
|
if (section == data_section)
|
|
{
|
|
dst = dst_save
|
|
+ RVA_TO_SECTION_OFFSET (PTR_TO_RVA (data_start), dst_section);
|
|
COPY_PROC_CHUNK ("Dumping initialized data...", data_start, data_size);
|
|
dst = dst_save + dst_section->SizeOfRawData;
|
|
}
|
|
if (section == bss_section)
|
|
{
|
|
/* Dump contents of bss variables, adjusting the section's raw
|
|
data size as necessary. */
|
|
dst = dst_save
|
|
+ RVA_TO_SECTION_OFFSET (PTR_TO_RVA (bss_start), dst_section);
|
|
COPY_PROC_CHUNK ("Dumping bss data...", bss_start, bss_size);
|
|
ROUND_UP_DST (dst_nt_header->OptionalHeader.FileAlignment);
|
|
dst_section->PointerToRawData = PTR_TO_OFFSET (dst_save, p_outfile);
|
|
/* Determine new size of raw data area. */
|
|
dst = max (dst, dst_save + dst_section->SizeOfRawData);
|
|
dst_section->SizeOfRawData = dst - dst_save;
|
|
dst_section->Characteristics &= ~IMAGE_SCN_CNT_UNINITIALIZED_DATA;
|
|
dst_section->Characteristics |= IMAGE_SCN_CNT_INITIALIZED_DATA;
|
|
}
|
|
if (section == bss_section_static)
|
|
{
|
|
/* Dump contents of static bss variables, adjusting the
|
|
section's raw data size as necessary. */
|
|
dst = dst_save
|
|
+ RVA_TO_SECTION_OFFSET (PTR_TO_RVA (bss_start_static), dst_section);
|
|
COPY_PROC_CHUNK ("Dumping static bss data...", bss_start_static, bss_size_static);
|
|
ROUND_UP_DST (dst_nt_header->OptionalHeader.FileAlignment);
|
|
dst_section->PointerToRawData = PTR_TO_OFFSET (dst_save, p_outfile);
|
|
/* Determine new size of raw data area. */
|
|
dst = max (dst, dst_save + dst_section->SizeOfRawData);
|
|
dst_section->SizeOfRawData = dst - dst_save;
|
|
dst_section->Characteristics &= ~IMAGE_SCN_CNT_UNINITIALIZED_DATA;
|
|
dst_section->Characteristics |= IMAGE_SCN_CNT_INITIALIZED_DATA;
|
|
}
|
|
if (section == heap_section)
|
|
{
|
|
DWORD heap_start = get_heap_start ();
|
|
DWORD heap_size = get_committed_heap_size ();
|
|
|
|
/* Dump the used portion of the predump heap, adjusting the
|
|
section's size to the appropriate size. */
|
|
dst = dst_save
|
|
+ RVA_TO_SECTION_OFFSET (PTR_TO_RVA (heap_start), dst_section);
|
|
COPY_PROC_CHUNK ("Dumping heap...", heap_start, heap_size);
|
|
ROUND_UP_DST (dst_nt_header->OptionalHeader.FileAlignment);
|
|
dst_section->PointerToRawData = PTR_TO_OFFSET (dst_save, p_outfile);
|
|
/* Determine new size of raw data area. */
|
|
dst = max (dst, dst_save + dst_section->SizeOfRawData);
|
|
dst_section->SizeOfRawData = dst - dst_save;
|
|
/* Reduce the size of the heap section to fit (must be last
|
|
section). */
|
|
dst_nt_header->OptionalHeader.SizeOfImage -=
|
|
dst_section->Misc.VirtualSize
|
|
- ROUND_UP (dst_section->SizeOfRawData,
|
|
dst_nt_header->OptionalHeader.SectionAlignment);
|
|
dst_section->Misc.VirtualSize =
|
|
ROUND_UP (dst_section->SizeOfRawData,
|
|
dst_nt_header->OptionalHeader.SectionAlignment);
|
|
dst_section->Characteristics &= ~IMAGE_SCN_CNT_UNINITIALIZED_DATA;
|
|
dst_section->Characteristics |= IMAGE_SCN_CNT_INITIALIZED_DATA;
|
|
}
|
|
|
|
/* Align the section's raw data area. */
|
|
ROUND_UP_DST (dst_nt_header->OptionalHeader.FileAlignment);
|
|
|
|
section++;
|
|
dst_section++;
|
|
}
|
|
|
|
/* Copy remainder of source image. */
|
|
do
|
|
section--;
|
|
while (section->PointerToRawData == 0);
|
|
offset = ROUND_UP (section->PointerToRawData + section->SizeOfRawData,
|
|
nt_header->OptionalHeader.FileAlignment);
|
|
COPY_CHUNK
|
|
("Copying remainder of executable...",
|
|
OFFSET_TO_PTR (offset, p_infile),
|
|
p_infile->size - offset);
|
|
|
|
/* Final size for new image. */
|
|
p_outfile->size = DST_TO_OFFSET ();
|
|
|
|
/* Now patch up remaining file-relative offsets. */
|
|
section = IMAGE_FIRST_SECTION (nt_header);
|
|
dst_section = IMAGE_FIRST_SECTION (dst_nt_header);
|
|
|
|
#define ADJUST_OFFSET(var) \
|
|
do { \
|
|
if ((var) != 0) \
|
|
(var) = relocate_offset ((var), nt_header, dst_nt_header); \
|
|
} while (0)
|
|
|
|
dst_nt_header->OptionalHeader.SizeOfInitializedData = 0;
|
|
dst_nt_header->OptionalHeader.SizeOfUninitializedData = 0;
|
|
for (i = 0; i < dst_nt_header->FileHeader.NumberOfSections; i++)
|
|
{
|
|
/* Recompute data sizes for completeness. */
|
|
if (dst_section[i].Characteristics & IMAGE_SCN_CNT_INITIALIZED_DATA)
|
|
dst_nt_header->OptionalHeader.SizeOfInitializedData +=
|
|
ROUND_UP (dst_section[i].Misc.VirtualSize, dst_nt_header->OptionalHeader.FileAlignment);
|
|
else if (dst_section[i].Characteristics & IMAGE_SCN_CNT_UNINITIALIZED_DATA)
|
|
dst_nt_header->OptionalHeader.SizeOfUninitializedData +=
|
|
ROUND_UP (dst_section[i].Misc.VirtualSize, dst_nt_header->OptionalHeader.FileAlignment);
|
|
|
|
ADJUST_OFFSET (dst_section[i].PointerToLinenumbers);
|
|
}
|
|
|
|
ADJUST_OFFSET (dst_nt_header->FileHeader.PointerToSymbolTable);
|
|
|
|
/* Update offsets in debug directory entries. */
|
|
{
|
|
IMAGE_DATA_DIRECTORY debug_dir =
|
|
dst_nt_header->OptionalHeader.DataDirectory[IMAGE_DIRECTORY_ENTRY_DEBUG];
|
|
PIMAGE_DEBUG_DIRECTORY debug_entry;
|
|
|
|
section = rva_to_section (debug_dir.VirtualAddress, dst_nt_header);
|
|
if (section)
|
|
{
|
|
debug_entry = (PIMAGE_DEBUG_DIRECTORY)
|
|
(RVA_TO_OFFSET (debug_dir.VirtualAddress, section) + p_outfile->file_base);
|
|
debug_dir.Size /= sizeof (IMAGE_DEBUG_DIRECTORY);
|
|
|
|
for (i = 0; i < debug_dir.Size; i++, debug_entry++)
|
|
ADJUST_OFFSET (debug_entry->PointerToRawData);
|
|
}
|
|
}
|
|
}
|
|
|
|
|
|
/* Dump out .data and .bss sections into a new executable. */
|
|
void
|
|
unexec (char *new_name, char *old_name, void *start_data, void *start_bss,
|
|
void *entry_address)
|
|
{
|
|
file_data in_file, out_file;
|
|
char out_filename[MAX_PATH], in_filename[MAX_PATH];
|
|
unsigned long size;
|
|
char *ptr;
|
|
|
|
/* Make sure that the input and output filenames have the
|
|
".exe" extension...patch them up if they don't. */
|
|
strcpy (in_filename, old_name);
|
|
ptr = in_filename + strlen (in_filename) - 4;
|
|
if (strcmp (ptr, ".exe"))
|
|
strcat (in_filename, ".exe");
|
|
|
|
strcpy (out_filename, new_name);
|
|
ptr = out_filename + strlen (out_filename) - 4;
|
|
if (strcmp (ptr, ".exe"))
|
|
strcat (out_filename, ".exe");
|
|
|
|
printf ("Dumping from %s\n", in_filename);
|
|
printf (" to %s\n", out_filename);
|
|
|
|
/* We need to round off our heap to NT's page size. */
|
|
round_heap (get_page_size ());
|
|
|
|
/* Open the undumped executable file. */
|
|
if (!open_input_file (&in_file, in_filename))
|
|
{
|
|
printf ("Failed to open %s (%d)...bailing.\n",
|
|
in_filename, GetLastError ());
|
|
exit (1);
|
|
}
|
|
|
|
/* Get the interesting section info, like start and size of .bss... */
|
|
get_section_info (&in_file);
|
|
|
|
/* The size of the dumped executable is the size of the original
|
|
executable plus the size of the heap and the size of the .bss section. */
|
|
size = in_file.size +
|
|
get_committed_heap_size () +
|
|
extra_bss_size +
|
|
extra_bss_size_static;
|
|
if (!open_output_file (&out_file, out_filename, size))
|
|
{
|
|
printf ("Failed to open %s (%d)...bailing.\n",
|
|
out_filename, GetLastError ());
|
|
exit (1);
|
|
}
|
|
|
|
/* Set the flag (before dumping). */
|
|
using_dynamic_heap = TRUE;
|
|
|
|
copy_executable_and_dump_data (&in_file, &out_file);
|
|
|
|
/* Patch up header fields; profiler is picky about this. */
|
|
{
|
|
PIMAGE_DOS_HEADER dos_header;
|
|
PIMAGE_NT_HEADERS nt_header;
|
|
HANDLE hImagehelp = LoadLibrary ("imagehlp.dll");
|
|
DWORD headersum;
|
|
DWORD checksum;
|
|
|
|
dos_header = (PIMAGE_DOS_HEADER) out_file.file_base;
|
|
nt_header = (PIMAGE_NT_HEADERS) ((char *) dos_header + dos_header->e_lfanew);
|
|
|
|
nt_header->OptionalHeader.CheckSum = 0;
|
|
// nt_header->FileHeader.TimeDateStamp = time (NULL);
|
|
// dos_header->e_cp = size / 512;
|
|
// nt_header->OptionalHeader.SizeOfImage = size;
|
|
|
|
pfnCheckSumMappedFile = (void *) GetProcAddress (hImagehelp, "CheckSumMappedFile");
|
|
if (pfnCheckSumMappedFile)
|
|
{
|
|
// nt_header->FileHeader.TimeDateStamp = time (NULL);
|
|
pfnCheckSumMappedFile (out_file.file_base,
|
|
out_file.size,
|
|
&headersum,
|
|
&checksum);
|
|
nt_header->OptionalHeader.CheckSum = checksum;
|
|
}
|
|
FreeLibrary (hImagehelp);
|
|
}
|
|
|
|
close_file_data (&in_file);
|
|
close_file_data (&out_file);
|
|
}
|
|
|
|
/* eof */
|